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References

1 Aarseth, S.J., “N-body & Downloads”, project homepage, Institute of Astronomy, Cambridge University. URL (accessed 07 November 2012):
External Linkhttp://www.ast.cam.ac.uk/~sverre/web/pages/nbody.htm.
2 Aarseth, S.J., “From NBODY1 to NBODY6: The Growth of an Industry”, Publ. Astron. Soc. Pac., 111, 1333–1346 (1999). [External LinkDOI], [External LinkADS].
3 Aarseth, S.J., “Star cluster simulations: The state of the art”, Celest. Mech. Dyn. Astron., 73, 127–137 (1999). [External LinkDOI], [External Linkastro-ph/9901069].
4 Aarseth, S.J., Gravitational N-Body Simulations: Tools and Algorithms, Cambridge Monographs on Mathematical Physics, (Cambridge University Press, Cambridge; New York, 2003). [External LinkGoogle Books].
5 Aarseth, S.J., “Post-Newtonian N-body simulations”, Mon. Not. R. Astron. Soc., 378, 285–292 (2007). [External LinkDOI], [External LinkADS], [External Linkastro-ph/0701612].
6 Aarseth, S.J., “Mergers and ejections of black holes in globular clusters”, Mon. Not. R. Astron. Soc., 422, 841–848 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1202.4688 [astro-ph.SR]].
7 Abadie, J. et al. (LIGO Scientific Collaboration and Virgo Collaboration), “Predictions for the rates of compact binary coalescences observable by ground-based gravitational-wave detectors”, Class. Quantum Grav., 27, 173001 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1003.2480 [astro-ph.HE]].
8 Abdo, A.A. et al., “A population of gamma-ray emitting globular clusters seen with the Fermi Large Area Telescope”, Astron. Astrophys., 524, A75 (2010). [External LinkDOI], [External LinkADS].
9 Abel, T., Bryan, G.L. and Norman, M.L., “The Formation and Fragmentation of Primordial Molecular Clouds”, Astrophys. J., 540, 39–44 (2000). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0002135].
10 Altamirano, D., Casella, P., Patruno, A., Wijnands, R. and van der Klis, M., “Intermittent Millisecond X-Ray Pulsations from the Neutron Star X-Ray Transient SAX J1748.9-2021 in the Globular Cluster NGC 6440”, Astrophys. J. Lett., 674, L45–L48 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0708.1316].
11 Altamirano, D. et al., “Discovery of a 205.89 Hz Accreting Millisecond X-ray Pulsar in the Globular Cluster NGC 6440”, Astrophys. J. Lett., 712, L58–L62 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0911.0435 [astro-ph.HE]].
12 Amaro-Seoane, P., “Stellar dynamics and extreme-mass ratio inspirals”, arXiv, e-print, (2012). [External LinkADS], [External LinkarXiv:1205.5240 [astro-ph.CO]].
13 Amaro-Seoane, P., Brem, P., Cuadra, J. and Armitage, P.J., “The butterfly effect in the extreme-mass ratio inspiral problem”, Astrophys. J. Lett., 744, L20 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1108.5174 [astro-ph.CO]].
14 Amaro-Seoane, P. and Freitag, M., “Relativistic encounters in dense stellar systems”, Mon. Not. R. Astron. Soc., 412, 551–554 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1009.1870 [astro-ph.CO]].
15 Amaro-Seoane, P., Freitag, M. and Spurzem, R., “Accretion of stars on to a massive black hole: a realistic diffusion model and numerical studies”, Mon. Not. R. Astron. Soc., 352, 655–672 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0401163].
16 Anderson, J., Cool, A.M. and King, I.R., “A probable dwarf nova outburst in the core of the globular cluster M22”, Astrophys. J. Lett., 597, 137–140 (2003). [External LinkDOI].
17 Angelini, L., Loewenstein, M. and Mushotzky, R.F., “The X-ray globular cluster population in NGC 1399”, Astrophys. J. Lett., 557, L35–L38 (2001). [External LinkDOI], [External Linkastro-ph/0107362].
18 Antonov, V.A., Solution of the problem of stability of stellar system Emden’s density law and the spherical distribution of velocities, (Vestnik Leningradskogo Universiteta, Leningrad University, Leningrad, 1962). [External LinkADS].
19 Ardi, E., Baumgardt, H. and Mineshige, S., “The Influence of Initial Mass Segregation on the Runaway Merging of Stars”, Astrophys. J., 682, 1195–1204 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0804.2299].
20 Auriere, M., Le Fevre, O. and Terzan, A., “A possible optical counterpart for the M15 globular cluster X-ray source”, Astron. Astrophys., 138, 415–420 (1984).
21 Bagchi, M. and Ray, A., “Orbital Eccentricity of Binary Radio Pulsars in Globular Clusters and the Interaction Between Stars”, Astrophys. J., 693, L91–L95 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0901.1295 [astro-ph.SR]].
22 Bagchi, M. and Ray, A., “Radio Pulsar Binaries in Globular Clusters: Their Orbital Eccentricities and Stellar Interactions”, Astrophys. J., 701, 1161–1174 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0906.2163 [astro-ph.SR]].
23 Bailyn, C.D., “Neutron star/red giant encounters in globular clusters”, Nature, 332, 330–332 (1988). [External LinkDOI], [External LinkADS].
24 Bailyn, C.D., “Compact objects in globular clusters”, in Janes, K., ed., The Formation and Evolution of Star Clusters, Proceedings of a symposium held as part of the 102nd Summer Scientific Meeting of the ASP in Boston, MA, July 14 – 15, 1990, ASP Conference Series, 13, pp. 307–323, (Astronomical Society of the Pacific, San Francisco, 1991).
25 Bailyn, C.D., “Blue stragglers and other stellar anomalies: Implications for the dynamics of globular clusters”, Annu. Rev. Astron. Astrophys., 33, 133–162 (1995). [External LinkDOI].
26 Bailyn, C.D., Grindlay, J.E., Cohn, H. and Lugger, P.M., “Color maps of X-ray globular clusters”, Astrophys. J., 331, 303–312 (1988). [External LinkDOI].
27 Bailyn, C.D., Grindlay, J.E. and Garcia, M.R., “Does tidal capture produce cataclysmic variables?”, Astrophys. J., 357, L35–L37 (1990). [External LinkDOI], [External LinkADS].
28 Banerjee, S., Baumgardt, H. and Kroupa, P., “Stellar-mass black holes in star clusters: implications for gravitational wave radiation”, Mon. Not. R. Astron. Soc., 402, 371–380 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0910.3954 [astro-ph.SR]].
29 Banerjee, S. and Ghosh, P., “Evolution of Compact Binary Populations in Globular Clusters: a Boltzmann Study”, in Vesperini, E., Giersz, M. and Sills, A., eds., Dynamical Evolution of Dense Stellar Systems, Proceedings of IAU Symposium 246, September 2007, Proc. IAU, 246, pp. 246–250, (Cambridge University Press, Cambridge, 2008). [External LinkDOI], [External LinkADS].
30 Banerjee, S. and Ghosh, P., “Evolution of Compact Binary Populations in Globular Clusters: A Boltzmann Study. II. Introducing Stochasticity”, Astrophys. J., 680, 1438–1449 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0802.2446].
31 Barnard, R., Garcia, M., Li, Z., Primini, F. and Murray, S.S., “Four New Black Hole Candidates Identified in M31 Globular Clusters with Chandra and XMM-Newton”, Astrophys. J., 734, 79 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1104.0860 [astro-ph.HE]].
32 Bash, F.N., Gebhardt, K., Goss, W.M. and Vanden Bout, P.A., “Very Large Array Limits for Intermediate-Mass Black Holes in Three Globular Clusters”, Astron. J., 135, 182–186 (2008). [External LinkDOI], [External LinkADS].
33 Bassa, C. et al., “X-ray sources and their optical counterparts in the globular cluster M4”, Astrophys. J., 609, 755–765 (2004). [External LinkDOI].
34 Bastian, N., Covey, K.R. and Meyer, M.R., “A Universal Stellar Initial Mass Function? A Critical Look at Variations”, Annu. Rev. Astron. Astrophys., 48, 339–389 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1001.2965 [astro-ph.GA]].
35 Baumgardt, H., “Scaling of N-body calculations”, Mon. Not. R. Astron. Soc., 325, 1323–1331 (2001). [External LinkDOI], [External Linkastro-ph/0012330].
36 Baumgardt, H., Hopman, C., Portegies Zwart, S. and Makino, J., “Tidal capture of stars by intermediate-mass black holes”, Mon. Not. R. Astron. Soc., 372, 467–478 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0511752].
37 Baumgardt, H. and Klessen, R.S., “The role of stellar collisions for the formation of massive stars”, Mon. Not. R. Astron. Soc., 413, 1810–1818 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1009.1189 [astro-ph.GA]].
38 Baumgardt, H., Makino, J. and Ebisuzaki, T., “Massive Black Holes in Star Clusters. II. Realistic Cluster Models”, Astrophys. J., 613, 1143–1156 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0406231].
39 Baumgardt, H., Makino, J. and Hut, P., “Which globular clusters contain intermediate-mass black holes?”, Astrophys. J., 620, 238–243 (2005). [External LinkDOI].
40 Baumgardt, H., Makino, J., Hut, P., McMillan, S. and Portegies Zwart, S., “A Dynamical Model for the Globular Cluster G1”, Astrophys. J. Lett., 589, L25–L28 (2003). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0301469].
41 Baumgarte, T.W. and Shapiro, S.L., “Evolution of Rotating Supermassive Stars to the Onset of Collapse”, Astrophys. J., 526, 941–952 (1999). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/9909237].
42 Beccari, G. et al., “The Blue Straggler Population in the Globular Cluster M53 (NGC 5024): A Combined HST, LBT, and CFHT Study”, Astrophys. J., 679, 712–719 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0802.2613].
43 Belczynski, K., Bulik, T., Fryer, C.L., Ruiter, A., Valsecchi, F., Vink, J.S. and Hurley, J.R., “On the Maximum Mass of Stellar Black Holes”, Astrophys. J., 714, 1217–1226 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0904.2784 [astro-ph.SR]].
44 Belczynski, K., Dominik, M., Bulik, T., O’Shaughnessy, R., Fryer, C. and Holz, D.E., “The Effect of Metallicity on the Detection Prospects for Gravitational Waves”, Astrophys. J., 715, L138–L141 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1004.0386 [astro-ph.HE]].
45 Belczynski, K. and Kalogera, V., “A new formation channel for double neutron stars without recycling, implications for gravitational wave detection”, Astrophys. J. Lett., 550, L183–L187 (2001).
46 Belczynski, K., Kalogera, V. and Bulik, T., “A Comprehensive Study of Binary Compact Objects as Gravitational Wave Sources: Evolutionary Channels, Rates, and Physical Properties”, Astrophys. J., 572, 407–431 (2002). [External LinkDOI], [External LinkADS].
47 Belczynski, K., Kalogera, V., Rasio, F.A., Taam, R.E., Zezas, A., Bulik, T., Maccarone, T.J. and Ivanova, N., “Compact Object Modeling with the StarTrack Population Synthesis Code”, Astrophys. J. Suppl. Ser., 174, 223–260 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0511811].
48 Belczynski, K., Taam, R.E., Kalogera, V., Rasio, F.A. and Bulik, T., “On the Rarity of Double Black Hole Binaries: Consequences for Gravitational Wave Detection”, Astrophys. J., 662, 504–511 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0612032].
49 Belkus, H., Van Bever, J. and Vanbeveren, D., “The Evolution of Very Massive Stars”, Astrophys. J., 659, 1576–1581 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0701334].
50 Bellazzini, M., Pasquali, A., Federici, L., Ferraro, F.R. and Pecci, F.F., “Low-mass X-ray binaries in globular clusters: A new metallicity effect”, Astrophys. J., 439, 687–694 (1995). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/9407086].
51 Benacquista, M.J., “Gravitational radiation from globular clusters”, Astrophys. J., 520, 233–238 (1999). [External LinkDOI].
52 Benacquista, M.J., “Detecting eccentric globular cluster binaries with LISA”, in Wheeler, J.C. and Martel, H., eds., Relativistic Astrophysics, 20th Texas Symposium, Austin, Texas, 10 – 15 December 2000, AIP Conference Proceedings, 586, pp. 793–795, (American Institute of Physics, Melville, 2001). [External Linkastro-ph/0106086].
53 Benacquista, M.J., “Gravitational Radiation from Black Hole Binaries in Globular Clusters”, Class. Quantum Grav., 19, 1297–1302 (2002). [External LinkDOI], [External Linkastro-ph/0110016].
54 Benacquista, M.J., Portegies Zwart, S.F. and Rasio, F.A., “LISA sources in globular clusters”, Class. Quantum Grav., 18, 4025–4031 (2001). [External LinkDOI], [External Linkgr-qc/0010020].
55 Bender, P.L. et al., LISA. Laser Interferometer Space Antenna for the detection and observation of gravitational waves. A Cornerstone Project in ESA’s long term space science programme ‘Horizon 2000 Plus’. Pre-Phase A Report, December 1995, MPQ Reports, MPQ-208, (Max-Planck-Institut für Quantenoptik, Garching, 1996). Online version (accessed 31 January 2006):
External Linkhttp://www.mpq.mpg.de/library/mpq-reports.html.
56 Bettwieser, E. and Sugimoto, D., “Post-collapse evolution and gravothermal oscillation of globular clusters”, Mon. Not. R. Astron. Soc., 208, 493–509 (1984). [External LinkADS].
57 Binney, J. and Tremaine, S., Galactic Dynamics, Princeton Series in Astrophysics, (Princeton University Press, Princeton, NJ, 1987). [External LinkGoogle Books].
58 Bond, I.A. et al., “Multiple outbursts of a cataclysmic variable in the globular cluster M22”, Astrophys. J. Lett., 620, 103–106 (2005). [External LinkDOI].
59 Bordas, P. et al., “A hard X-ray transient in the direction of Terzan 5 detected by INTEGRAL”, Astron. Telegram, 2919, 1 (2010). [External LinkADS].
60 Brassington, N.J. et al., “The X-ray Spectra of the Luminous LMXBs in NGC 3379: Field and Globular Cluster Sources”, Astrophys. J., 725, 1805–1823 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1003.3236 [astro-ph.CO]].
61 Brodie, J. P. and Strader, J., “Extragalactic Globular Clusters and Galaxy Formation”, Annu. Rev. Astron. Astrophys., 44, 193–267 (2006). [External LinkDOI].
62 Camilo, F., Lorimer, D.R., Freire, P.C.C., Lyne, A.G. and Manchester, R.N., “Observations of 20 millisecond pulsars in 47 Tucanae at 20 centimeters”, Astrophys. J., 535, 975–990 (2000). [External LinkDOI].
63 Camilo, F. and Rasio, F.A., “Pulsars in Globular Clusters”, in Rasio, F.A. and Stairs, I.H., eds., Binary Radio Pulsars, Proceedings of a meeting held at the Aspen Center for Physics, USA, 12 – 16 January 2004, ASP Conference Series, 328, pp. 147–169, (Astronomical Society of the Pacific, San Francisco, 2005). [External Linkastro-ph/0501226].
64 Camilo, F. et al., “Discovery of five binary radio pulsars”, Astrophys. J. Lett., 548, L187–L191 (2001). [External LinkDOI].
65 Carney, B.W., “Globular Cluster Systems”, in Carney, B.W. and Harris, W.E., eds., Star Clusters: Saas-Fee Advanced Course 28, Saas-Fee Advanced Courses, 28, pp. 223–408, (Springer, Berlin; New York, 2001).
66 Carney, B.W., “Stellar Evolution in Globular Clusters”, in Carney, B.W. and Harris, W.E., eds., Star Clusters: Saas-Fee Advanced Course 28, Saas-Fee Advanced Courses, 28, pp. 1–222, (Springer, Berlin; New York, 2001).
67 Carretta, E., Gratton, R.G., Clementini, G. and Fusi Pecci, F., “Distance, ages, and epoch of formation of globular clusters”, Astrophys. J., 533, 215–235 (2000). [External LinkDOI].
68 Casertano, S. and Hut, P., “Core radius and density measurements in N-body experiments: Connections with theoretical and observational definitions”, Astrophys. J., 298, 80–94 (1985). [External LinkDOI], [External LinkADS].
69 Chaboyer, B., “Milky Way Globular Clusters”, personal homepage, Dartmouth College. URL (accessed 07 November 2012):
External Linkhttp://www.dartmouth.edu/~chaboyer/mwgc.html.
70 Chabrier, G., “Galactic Stellar and Substellar Initial Mass Function”, Publ. Astron. Soc. Pac., 115, 763–795 (2003). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0304382].
71 Chandrasekhar, S. and von Neumann, J., “The Statistics of the Gravitational Field Arising from a Random Distribution of Stars. I. The Speed of Fluctuations”, Astrophys. J., 95, 489–531 (1942). [External LinkDOI], [External LinkADS].
72 Chatterjee, S., Fregeau, J.M., Umbreit, S. and Rasio, F.A., “Monte Carlo Simulations of Globular Cluster Evolution. V. Binary Stellar Evolution”, Astrophys. J., 719, 915–930 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0912.4682 [astro-ph.GA]].
73 Chou, Y. and Grindlay, J.E., “Binary and Long-Term (Triple?) Modulations of 4U 1820-30 in NGC 6624”, Astrophys. J., 563, 934–940 (2001). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0108405].
74 Clark, G.W., “X-ray binaries in globular clusters”, Astrophys. J., 199, L143–L145 (1975). [External LinkDOI], [External LinkADS].
75 Clarke, C.J. and Bonnell, I.A., “Accretion-driven core collapse and the collisional formation of massive stars”, Mon. Not. R. Astron. Soc., 388, 1171–1174 (2008). [External LinkDOI], [External LinkADS].
76 “Cluster AgeS Experiment (CASE)”, project homepage, Copernicus Astronomical Center. URL (accessed 07 November 2012):
External Linkhttp://case.camk.edu.pl.
77 Cohn, H., “Numerical integration of the Fokker–Planck equation and the evolution of star clusters”, Astrophys. J., 234, 1036–1053 (1979). [External LinkDOI].
78 Cohn, H.N. et al., “Identification of Faint Chandra X-ray Sources in the Core-collapsed Globular Cluster NGC 6397: Evidence for a Bimodal Cataclysmic Variable Population”, Astrophys. J., 722, 20–32 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1106.1927 [astro-ph.GA]].
79 Colpi, M., Mapelli, M. and Possenti, A., “Probing the Presence of a Single or Binary Black Hole in the Globular Cluster NGC 6752 with Pulsar Dynamics”, Astrophys. J., 599, 1260–1271 (2003). [External LinkDOI].
80 Colpi, M., Possenti, A. and Gualandris, A., “The case of PSR J1911-5958A in the outskirts of NGC 6752: Signature of a black hole binary in the cluster core?”, Astrophys. J. Lett., 570, 85–88 (2002). [External LinkDOI].
81 Conroy, C. and Spergel, D.N., “On the Formation of Multiple Stellar Populations in Globular Clusters”, Astrophys. J., 726, 36 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1005.4934 [astro-ph.GA]].
82 Cool, A.M., Grindlay, J.E., Cohn, H.N., Lugger, P.M. and Bailyn, C.D., “Cataclysmic variables and a new class of faint ultraviolet stars in the globular cluster NGC 6397”, Astrophys. J. Lett., 508, L75–L79 (1998). [External LinkDOI].
83 Cool, A.M., Piotto, G. and King, I.R., “The main sequence and a white dwarf sequence in the globular cluster NGC 6397”, Astrophys. J., 468, 655–662 (1996). [External LinkDOI].
84 Cudworth, K.M., “Astrometry and photometry in the gloublar cluster NGC 6712”, Astron. J., 96, 105–115 (1988). [External LinkDOI].
85 Dale, J.E., Ercolano, B. and Bonnell, I.A., “Ionizing feedback from massive stars in massive clusters – II. Disruption of bound clusters by photoionization”, Mon. Not. R. Astron. Soc., 424, 377–392 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1205.0360 [astro-ph.GA]].
86 Dalessandro, E., Beccari, G., Lanzoni, B., Ferraro, F.R., Schiavon, R. and Rood, R.T., “Multiwavelength Photometry in the Globular Cluster M2”, Astrophys. J. Suppl. Ser., 182, 509–518 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0903.3527 [astro-ph.GA]].
87 Dalessandro, E., Lanzoni, B., Ferraro, F.R., Rood, R.T., Milone, A., Piotto, G. and Valenti, E., “Blue Straggler Stars in the Unusual Globular Cluster NGC 6388”, Astrophys. J., 677, 1069–1079 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0712.4272].
88 D’Amico, N., Lyne, A.G., Manchester, R.N., Possenti, A. and Camilo, F., “Discovery of short-period binary millisecond pulsars in four globular clusters”, Astrophys. J. Lett., 548, L171–L174 (2001). [External LinkDOI].
89 D’Amico, N., Possenti, A., Manchester, R.N., Lyne, A.G., Camilo, F. and Sarkissian, J., “Searching for millisecond pulsars in globular clusters with Parkes”, in Bailes, M., Nice, D.J. and Thorsett, S.E., eds., Radio Pulsars: In Celebration of the Contributions of Andrew Lyne, Dick Manchester and Joe Taylor – A Festschrift Honoring their 60th Birthdays, Proceedings of a Meeting held at Mediterranean Agronomic Institute of Chania, Crete, Greece, 26 – 29 August 2002, ASP Conference Proceedings, 302, p. 375, (Astronomical Society of the Pacific, San Francisco, 2003).
90 D’Amico, N., Possenti, A., Manchester, R.N., Sarkissian, J., Lyne, A.G. and Camilo, F., “New millisecond pulsars in globular clusters”, in Wheeler, J.C. and Martel, H., eds., Relativistic Astrophysics, 20th Texas Symposium, Austin, Texas, 10 – 15 December 2000, AIP Conference Proceedings, 586, pp. 526–531, (American Institute of Physics, Melville, NY, 2001).
91 D’Antona, F. and Caloi, V., “The early evolution of globular clusters: The case of NGC 2808”, Astrophys. J., 611, 871–880 (2004). [External LinkDOI].
92 D’Antona, F., Ventura, P. and Caloi, V., “The First Stages of the Evolution of Globular Clusters”, in Vallenari, A., Tantalo, R., Portinari, L. and Moretti, A., eds., From Stars to Galaxies: Building the Pieces to Build Up the Universe, Proceedings of of a workshop held at Istituto Veneto di Scienze, Lettere ed Arti, Venice, Italy, 16 – 20 October 2006, ASP Conference Series, 374, pp. 155–162, (Astronomical Society of the Pacific, San Francisco, 2007). [External LinkADS], [External LinkarXiv:astro-ph/0612654].
93 Davies, M.B., “The binary zoo: the calculation of production rates of binaries through 2+1 encounters in globular clusters”, Mon. Not. R. Astron. Soc., 276, 887–905 (1995). [External LinkADS].
94 Davies, M.B., “Cataclysmic variable production in globular clusters”, Mon. Not. R. Astron. Soc., 288, 117–128 (1997). [External LinkDOI].
95 Davies, M.B. and Benz, W., “A stellar audit: the computation of encounter rates for 47 Tucanae and ω Centauri”, Mon. Not. R. Astron. Soc., 276, 876–886 (1995). [External LinkADS], [External LinkarXiv:astro-ph/9507025].
96 Davies, M.B. and Hansen, B.M.S., “Neutron star retention and millisecond pulsar production in globular clusters”, Mon. Not. R. Astron. Soc., 301, 15–24 (1998). [External LinkDOI].
97 Davies, M.B., Piotto, G. and de Angeli, F., “Blue straggler production in globular clusters”, Mon. Not. R. Astron. Soc., 349, 129–134 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0401502].
98 de Rijcke, S., Buyle, P. and Dejonghe, H., “Upper limits on the central black hole masses of 47Tuc and NGC 6397 from radio continuum emission”, Mon. Not. R. Astron. Soc., 368, L43–L46 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0601450].
99 Deutsch, E.W., Anderson, S.F., Margon, B. and Downes, R.A., “The probable optical counterpart of the luminous X-ray source in NGC 6441”, Astrophys. J., 493, 775–780 (1998). [External LinkDOI].
100 Deutsch, E.W., Margon, B. and Anderson, S.F., “Ultracompact X-ray binaries in globular clusters: variability of the optical counterpart of X1832-330 in NGC 6652”, Astrophys. J. Lett., 530, L21–L24 (2000). [External LinkDOI].
101 Devecchi, B., Colpi, M., Mapelli, M. and Possenti, A., “Millisecond pulsars around intermediate-mass black holes in globular clusters”, Mon. Not. R. Astron. Soc., 380, 691–702 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:0706.1656].
102 Di Stefano, R., Kong, A.K.H., Garcia, M.R., Barmby, P., Greiner, J., Murray, S.S. and Primini, F.A., “Bright X-ray sources in M31 globular clusters”, Astrophys. J., 570, 618–636 (2002). [External LinkDOI], [External Linkastro-ph/0106254].
103 Di Stefano, R. and Rappaport, S., “Predictions of a population of cataclysmic variables in globular clusters”, Astrophys. J., 423, 274–293 (1994). [External LinkDOI], [External LinkADS].
104 Dieball, A., Knigge, C., Zurek, D.R., Shara, M.M. and Long, K.S., “Far-ultraviolet observations of the globular cluster NGC 2808 revisited: Blue stragglers, white dwarfs, and cataclysmic variables”, Astrophys. J., 625, 156–166 (2005). [External LinkDOI], [External LinkADS].
105 Dieball, A., Knigge, C., Zurek, D.R., Shara, M.M., Long, K.S., Charles, P.A. and Hannikainen, D., “Unveiling the core of the globular cluster M15 in the ultraviolet”, Astrophys. J., 670, 379–399 (2007). [External LinkDOI], [External LinkADS].
106 Dieball, A., Knigge, C., Zurek, D.R., Shara, M.M., Long, K.S., Charles, P.A., Hannikainen, D.C. and van Zyl, L., “An Ultracompact X-Ray Binary in the Globular Cluster M15 (NGC 7078)”, Astrophys. J. Lett., 634, L105–L108 (2005). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0510430].
107 Dieball, A., Long, K.S., Knigge, C., Thomson, G.S. and Zurek, D.R., “A Far-ultraviolet Survey of M80: X-Ray Source Counterparts, Strange Blue Stragglers, and the Recovery of Nova T Sco”, Astrophys. J., 710, 332–345 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1001.1161 [astro-ph.SR]].
108 Downes, R.A., Webbink, R.F., Shara, M.M., Ritter, H., Kolb, U. and Duerbeck, H.W., “A catalog and atlas of catclysmic variables: The living edition”, Publ. Astron. Soc. Pac., 113, 764–768 (2001). [External LinkDOI], [External Linkastro-ph/0102302].
109 Downes, R.A., Webbink, R.F., Shara, M.M., Ritter, H., Kolb, U. and Duerbeck, H.W., “A Catalog and Atlas of Cataclysmic Variables: The Final Edition”, J. Astron. Data, 11, 2 (2005). [External LinkADS], [External LinkarXiv:astro-ph/0602278].
110 Downes, R.A., Webbink, R.F., Shara, M.M., Ritter, H., Kolb, U. and Duerbeck, H.W., “Catalog of Cataclysmic Variables (Downes+ 2001–2006)”, web interface to database, Harvard-Smithsonian Center for Astrophysics, (2006). URL (accessed 19 October 2011):
External Linkhttp://vizier.cfa.harvard.edu/viz-bin/VizieR?-source=V/123A.
111 Downing, J.M.B., Benacquista, M.J., Giersz, M. and Spurzem, R., “Compact binaries in star clusters – I. Black hole binaries inside globular clusters”, Mon. Not. R. Astron. Soc., 407, 1946–1962 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0910.0546 [astro-ph.SR]].
112 Downing, J.M.B., Benacquista, M.J., Giersz, M. and Spurzem, R., “Compact binaries in star clusters – II. Escapers and detection rates”, Mon. Not. R. Astron. Soc., 416, 133–147 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1008.5060 [astro-ph.GA]].
113 Drukier, G.A., Bailyn, C.D., Van Altena, W.F. and Girard, T.M., “Central proper-motion kinematics of NGC 6752”, Astron. J., 125, 2559–2567 (2003). [External LinkDOI].
114 Edmonds, P.D., Gilliland, R.L., Heinke, C.O. and Grindlay, J.E., “An extensive census of Hubble Space Telescope counterparts to Chandra X-ray sources in the globular cluster 47 Tucanae. I. Astrometry and photometry”, Astrophys. J., 596, 1177–1196 (2003).
115 Edmonds, P.D., Gilliland, R.L., Heinke, C.O. and Grindlay, J.E., “An extensive census of Hubble Space Telescope counterparts to Chandra X-ray sources in the globular cluster 47 Tucanae. II. Time series and analysis”, Astrophys. J., 596, 1197–1219 (2003).
116 Edmonds, P.D., Grindlay, J.E., Cool, A., Cohn, H., Lugger, P.M. and Bailyn, C.D., “Cataclysmic variables and a candidate helium white dwarf in the globular cluster NGC 6397”, Astrophys. J., 516, 250–262 (1999). [External LinkDOI].
117 Eggers, D., Weistrop, D., Stone, A., Nelson, C.H. and Hancock, M., “Hubble Space Telescope Observations of Star-forming Regions in NGC 3994/3995”, Astron. J., 129, 136–147 (2005). [External LinkDOI], [External LinkADS].
118 Einsel, C. and Spurzem, R., “Dynamical evolution of rotating stellar systems – I. Pre-collapse, equal-mass system”, Mon. Not. R. Astron. Soc., 302, 81–95 (1999). [External LinkDOI], [External LinkADS].
119 Ernst, A., Just, A. and Spurzem, R., “On the dissolution of star clusters in the Galactic Centre – I. Circular orbits”, Mon. Not. R. Astron. Soc., 399, 141–156 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0906.4459 [astro-ph.GA]].
120 Fabbiano, G. et al., “Field and Globular Cluster Low-mass X-ray Binaries in NGC 4278”, Astrophys. J., 725, 1824–1847 (2010). [External LinkDOI], [External LinkADS].
121 Fabian, A.C., Pringle, J.E. and Rees, M.J., “Tidal capture formation of binary systems and X-ray sources in globular clusters”, Mon. Not. R. Astron. Soc., 172, 15–18 (1975). [External LinkADS].
122 Feng, H. and Kaaret, P., “A Comparison of Ultraluminous X-Ray Sources in NGC 1399 and the Antennae Galaxies (NGC 4038/4039)”, Astrophys. J., 653, 536–544 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0608024].
123 Ferraro, F.R., Beccari, G., Rood, R.T., Bellazzini, M., Sills, A. and Sabbi, E., “Discovery of Another Peculiar Radial Distribution of Blue Stragglers in Globular Clusters: The Case of 47 Tucanae”, Astrophys. J., 603, 127–134 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0311317].
124 Ferraro, F.R., D’Amico, N., Possenti, A., Mignani, R.P. and Paltrinieri, B., “Blue stragglers, young white dwarfs and UV-excess stars in the core of 47 Tuc”, Astrophys. J., 561, 337–345 (2001). [External LinkDOI], [External Linkastro-ph/0107056].
125 Ferraro, F.R., Paltrinieri, B., Paresce, F. and De Marchi, G., “Very Large Telescope observations of the peculiar globular cluster NGC 6712: Discovery of a UV, Hα-excess star in the core”, Astrophys. J. Lett., 542, L29–L32 (2000). [External LinkDOI].
126 Ferraro, F.R., Paltrinieri, B., Rood, R.T., Fusi Pecci, F. and Buananno, R., “Another faint ultraviolet object associated with a globular cluster X-ray source: The case of M92”, Astrophys. J., 537, 312–318 (2000). [External LinkDOI].
127 Ferraro, F.R. et al., “HST observations of blue Straggler stars in the core of the globular cluster M 3”, Astron. Astrophys., 324, 915–928 (1997). [External LinkADS], [External LinkarXiv:astro-ph/9703026].
128 Fregeau, J.M., “Binary Stars and Globular Cluster Dynamics”, in Vesperini, E., Giersz, M. and Sills, A., eds., Dynamical Evolution of Dense Stellar Systems, Proceedings of IAU Symposium 246, held in Capri, Italy September 5 – 9, 2007, Proc. IAU, S246, pp. 239–245, (Cambridge University Press, Cambridge; New York, 2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0710.3167].
129 Fregeau, J.M., Cheung, P., Portegies Zwart, S.F. and Rasio, F.A., “Stellar collisions during binary-binary and binary-single star interactions”, Mon. Not. R. Astron. Soc., 352, 1–19 (2004). [External LinkDOI].
130 Fregeau, J.M., Gürkan, M.A., Joshi, K.J. and Rasio, F.A., “Monte Carlo simulations of globular cluster evolution. III. Primordial binary interactions”, Astrophys. J., 593, 772–787 (2003). [External LinkDOI].
131 Fregeau, J.M., Ivanova, N. and Rasio, F.A., “Evolution of the Binary Fraction in Dense Stellar Systems”, Astrophys. J., 707, 1533–1540 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0907.4196 [astro-ph.GA]].
132 Fregeau, J.M., Richer, H.B., Rasio, F.A. and Hurley, J.R., “The Dynamical Effects of White Dwarf Birth Kicks in Globular Star Clusters”, Astrophys. J., 695, L20–L24 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0902.1166 [astro-ph.GA]].
133 Freire, P.C.C., Camilo, F., Lorimer, D.R., Lyne, A.G., Manchester, R.N. and D’Amico, N., “Timing the millisecond pulsars in 47 Tucanae”, Mon. Not. R. Astron. Soc., 326, 901–915 (2001). [External LinkDOI], [External Linkastro-ph/0103372].
134 Freire, P.C.C., Gupta, Y., Ransom, S.M. and Ishwara-Chandra, C.H., “Giant Metrewave Radio Telescope discovery of a millisecond pulsar in a very eccentric binary system”, Astrophys. J. Lett., 606, L53–L56 (2004). [External LinkDOI].
135 Freire, P.C.C., Wolszczan, A., van den Berg, M. and Hessels, J.W.T., “A Massive Neutron Star in the Globular Cluster M5”, Astrophys. J., 679, 1433–1442 (2008). [External LinkDOI], [External Link0712.3826].
136 Freitag, M., Amaro-Seoane, P. and Kalogera, V., “Models of mass segregation at the Galactic Centre”, J. Phys.: Conf. Ser., 54, 252–258 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0607001].
137 Freitag, M. and Benz, W., “A new Monte Carlo code for star cluster simulations: I. Relaxation”, Astron. Astrophys., 375, 711–738 (2001). [External LinkDOI], [External LinkADS].
138 Freitag, M., Gürkan, M.A. and Rasio, F.A., “Runaway collisions in young star clusters – II. Numerical results”, Mon. Not. R. Astron. Soc., 368, 141–161 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0503130].
139 Freitag, M., Rasio, F.A. and Baumgardt, H., “Runaway collisions in young star clusters – I. Methods and tests”, Mon. Not. R. Astron. Soc., 368, 121–140 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0503129].
140 Fruchter, A.S. and Goss, W.M., “Deep radio imaging of globular clusters and the cluster pulsar population”, Astrophys. J., 536, 865–874 (2000). [External LinkDOI].
141 Fryer, C.L., “Mass Limits For Black Hole Formation”, Astrophys. J., 522, 413–418 (1999). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/9902315].
142 Fukushige, T., Makino, J. and Kawai, A., “GRAPE-6A: A Single-Card GRAPE-6 for Parallel PC–GRAPE Cluster System”, Publ. Astron. Soc. Japan, 57, 1009–1021 (2005). [External LinkADS], [External LinkarXiv:astro-ph/0504407].
143 Gaburov, E., Lombardi Jr, J.C. and Portegies Zwart, S., “On the onset of runaway stellar collisions in dense star clusters – II. Hydrodynamics of three-body interactions”, Mon. Not. R. Astron. Soc., 402, 105–126 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0904.0997 [astro-ph.SR]].
144 Gao, B., Goodman, J., Cohn, H. and Murphy, B., “Fokker–Planck calculations of star clusters with primordial binaries”, Astrophys. J., 370, 567–582 (1991). [External LinkDOI].
145 Gebhardt, K., Pryor, C., O’Connell, R.D., Williams, T.B. and Hesser, J.E., “Canada-France-Hawaii Telescope adaptive optics observations of the central kinematics in M15”, Astron. J., 119, 1268–1281 (2000). [External LinkDOI].
146 Gebhardt, K., Rich, R.M. and Ho, L.C., “An Intermediate-Mass Black Hole in the Globular Cluster G1: Improved Significance from New Keck and Hubble Space Telescope Observations”, Astrophys. J., 634, 1093–1102 (2005). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0508251].
147 Gendre, B., Barret, D. and Webb, N.A., “An XMM-Newton observation of the globular cluster Omega Centauri”, Astron. Astrophys., 400, 521–531 (2003). [External LinkDOI].
148 Gerssen, J., van der Marel, R.P., Gebhardt, K., Guhathakurta, P., Peterson, R.C. and Pryor, C., “Hubble Space Telescope Evidence for an Intermediate-Mass Black Hole in the Globular Cluster M15. II. Kinematic Analysis and Dynamical Modeling”, Astron. J., 124, 3270–3288 (2002). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0209315].
149 Gerssen, J., van der Marel, R.P., Gebhardt, K., Guhathakurta, P., Peterson, R.C. and Pryor, C., “Addendum: Hubble Space Telescope Evidence for an Intermediate-Mass Black Hole in the Globular Cluster M15. II. Kinematic Analysis and Dynamical Modeling [Astron. J. 124, 3270 (2002)]”, Astron. J., 125, 376–377 (2003). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0210158].
150 Geyer, M.P. and Burkert, A., “Formation of globular clusters in turbulent molecular clouds”, in Geisler, D., Grebel, E.K. and Minniti, D., eds., Extragalactic Star Clusters, Proceedings of the 207th Symposium of the IAU held in Pucón, Chile, 12 – 16 March 2001, IAU Symposia, 207, p. 678, (Astronomical Society of the Pacific, San Francisco, 2002). [External Linkastro-ph/0106016].
151 Ghosh, K.K., Suleymanov, V., Bikmaev, I., Shimansky, S. and Sakhibullin, N., “RBS 1032: a dwarf-nucleated spheroidal galaxy with an intermediate-mass black hole hosted in a globular cluster”, Mon. Not. R. Astron. Soc., 371, 1587–1593 (2006). [External LinkDOI], [External LinkADS].
152 Gieles, M. and Baumgardt, H., “Lifetimes of tidally limited star clusters with different radii”, Mon. Not. R. Astron. Soc., 389, L28–L32 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0806.2327].
153 Giersz, M., “Monte Carlo simulations of star clusters – I. First results”, Mon. Not. R. Astron. Soc., 298, 1239–1248 (1998). [External LinkDOI].
154 Giersz, M., “Monte Carlo simulations of star clusters – II. Tidally limited, multi-mass systems with stellar evolution”, Mon. Not. R. Astron. Soc., 324, 218–230 (2001). [External LinkDOI].
155 Giersz, M., “Monte Carlo simulations of star clusters – III. A million-body star cluster”, Mon. Not. R. Astron. Soc., 371, 484–494 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0512606].
156 Giersz, M. and Heggie, D.C., “Statistics of N-body simulations – I. Equal masses before core collapse”, Mon. Not. R. Astron. Soc., 268, 257–275 (1994). [External LinkADS], [External LinkarXiv:astro-ph/9305008].
157 Giersz, M. and Heggie, D.C., “Statistics of N-body simulations – III. Unequal masses”, Mon. Not. R. Astron. Soc., 279, 1037–1056 (1996). [External LinkDOI].
158 Giersz, M. and Heggie, D.C., “Monte Carlo simulations of star clusters – VI. The globular cluster NGC 6397”, Mon. Not. R. Astron. Soc., 395, 1173–1183 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0901.1085 [astro-ph.GA]].
159 Giersz, M., Heggie, D.C. and Hurley, J.R., “Monte Carlo simulations of star clusters – IV. Calibration of the Monte Carlo code and comparison with observations for the open cluster M67”, Mon. Not. R. Astron. Soc., 388, 429–443 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0801.3968].
160 Giersz, M., Heggie, D.C., Hurley, J. and Hypki, A., “MOCCA Code for Star Cluster Simulations – II. Comparison with N-body Simulations”, arXiv, e-print, (2011). [External LinkADS], [External LinkarXiv:1112.6246 [astro-ph.GA]].
161 Giersz, M. and Spurzem, R., “Comparing direct N-body integration with anisotropic gaseous models of star clusters”, Mon. Not. R. Astron. Soc., 269, 241–256 (1994). [External LinkADS].
162 Giersz, M. and Spurzem, R., “A stochastic Monte Carlo approach to model real star cluster evolution – II. Self-consistent models and primordial binaries”, Mon. Not. R. Astron. Soc., 317, 581–606 (2000). [External LinkDOI].
163 Giersz, M. and Spurzem, R., “A stochastic Monte Carlo approach to model real star cluster evolution – III. Direct integration of three- and four-body interactions”, Mon. Not. R. Astron. Soc., 343, 781–795 (2003). [External LinkDOI].
164 Gilfanov, M., “Low-mass X-ray binaries as a stellar mass indicator for the host galaxy”, Mon. Not. R. Astron. Soc., 349, 146–168 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0309454].
165 Glebbeek, E., Gaburov, E., de Mink, S.E., Pols, O.R. and Portegies Zwart, S.F., “The evolution of runaway stellar collision products”, Astron. Astrophys., 497, 255–264 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0902.1753 [astro-ph.SR]].
166 “Globular Cluster Group – Padova Astronomy Department”, project homepage, University of Padova. URL (accessed 07 November 2012):
External Linkhttp://dipastro.pd.astro.it/globulars/.
167 Gnedin, O.Y. and Ostriker, J.P., “Destruction of the galactic globular cluster system”, Astrophys. J., 474, 223–255 (1997). [External LinkDOI].
168 Goldman, I. and Mazeh, T., “On the orbital circularization of close binaries”, Astrophys. J., 376, 260–265 (1991). [External LinkDOI].
169 Goodman, J., Heggie, D.C. and Hut, P., “On the exponential instability of N-body systems”, Astrophys. J., 415, 715–733 (1993). [External LinkDOI].
170 Goodman, J. and Hut, P., “Binary–single-star scattering. V. Steady state binary distribution in a homogeneous static background of single stars”, Astrophys. J., 403, 271–277 (1993). [External LinkDOI], [External LinkADS].
171 Goodwin, S.P., “Residual gas expulsion from young globular clusters”, Mon. Not. R. Astron. Soc., 284, 785–802 (1997). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/9607083].
172 Goodwin, S.P. and Bastian, N., “Gas expulsion and the destruction of massive young clusters”, Mon. Not. R. Astron. Soc., 373, 752–758 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0609477].
173 Goswami, S., Umbreit, S., Bierbaum, M. and Rasio, F.A., “Formation of Massive Black Holes in Dense Star Clusters. II. Initial Mass Function and Primordial Mass Segregation”, Astrophys. J., 752, 43 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1105.5884 [astro-ph.GA]].
174 Gratton, R., Sneden, C. and Carretta, E., “Abundance Variations Within Globular Clusters”, Annu. Rev. Astron. Astrophys., 42, 385–440 (2004). [External LinkDOI], [External LinkADS].
175 Grindlay, J.E., “X-ray binaries in globular clusters”, in Grindlay, J.E. and Philip, A.G.D., eds., The Harlow-Shapley Symposium on Globular Cluster Systems in Galaxies, Proceedings of the 126th IAU Symposium, Cambridge, MA, Aug. 25 – 29, 1986, IAU Symposium, 126, pp. 347–363, (Kluwer, Dordrecht, 1988). [External LinkADS].
176 Grindlay, J.E., “X-Raying Stellar Remnants in Globular Clusters”, in Smith, G.H. and Brodie, J.P., eds., The Globular Cluster-Galaxy Connection, Proceedings of the 11th Santa Cruz Summer Workshop in Astronomy and Astrophysics, held July 19 – 29, 1992 at the University of California, Santa Cruz, San Francisco, ASP Conference Series, 48, p. 156, (Astronomical Society of the Pacific, San Francisco, 1993). [External LinkADS].
177 Grindlay, J.E., “Magnetic CVs in Globular Clusters”, in Hellier, C. and Mukai, K., eds., Annapolis Workshop on Magnetic Cataclysmic Variables, MCV2, held 1998 July 13 – 17 St. John’s College, Annapolis, Maryland, ASP Conference Series, 157, p. 377, (Astronomical Society of the Pacific, San Francisco, 1999). [External LinkADS].
178 Grindlay, J.E., Cool, A.M. and Bailyn, C.D., “CVs and millisecond pulsar progenitors in globular clusters”, in Janes, K., ed., The Formation and Evolution of Star Clusters, Proceedings of a symposium held as part of the 102nd Summer Scientific Meeting of the ASP in Boston, MA, July 14 – 15, 1990, ASP Conference Series, 13, pp. 396–400, (Astronomical Society of the Pacific, San Francisco, 1991).
179 Grindlay, J.E., Heinke, C.O., Edmonds, P.D. and Murray, S.S., “High-resolution X-ray imaging of a globular cluster core: Compact binaries in 47 Tuc”, Science, 292, 2290–2295 (2001). [External LinkDOI].
180 Grindlay, J.E., Heinke, C.O., Edmonds, P.D., Murray, S.S. and Cool, A.M., “Chandra exposes the core collapsed globular cluster NGC 6397”, Astrophys. J. Lett., 563, L53–L56 (2001). [External LinkDOI], [External Linkastro-ph/0108265].
181 Grindlay, J., Portegies Zwart, S. and McMillan, S., “Short gamma-ray bursts from binary neutron star mergers in globular clusters”, Nature Phys., 2, 116–119 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0512654].
182 Guetta, D. and Stella, L., “Short γ-ray bursts and gravitational waves from dynamically formed merging binaries”, Astron. Astrophys., 498, 329–333 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0811.0684].
183 Guhathakurta, P., Yanny, B., Schneider, D.P. and Bahcall, J.N., “Globular cluster photometry with the Hubble Space Telescope. V. WFPC2 study of M15’s central density cusp”, Astron. J., 111, 267–282 (1996). [External LinkDOI].
184 Guillot, S., Rutledge, R.E., Brown, E.F., Pavlov, G.G. and Zavlin, V.E., “Discovery of a candidate quiescent low-mass X-ray binary in the globular cluster NGC 6553”, Astrophys. J., 738, 129 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1104.3864 [astro-ph.GA]].
185 Guillot, S., Rutledge, R.E., Brown, E.F. and Pavlov, G.G. andZavlin, V.E., “Chandra Observation of Quiescent Low-Mass X-Ray Binaries in the Globular Cluster NGC 6304”, Astrophys. J., 699, 1418–1422 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0903.4864 [astro-ph.GA]].
186 Gültekin, K., Miller, M.C. and Hamilton, D.P., “Growth of Intermediate-Mass Black Holes in Globular Clusters”, Astrophys. J., 616, 221–230 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0402532].
187 Gunn, J.E. and Griffin, R.F., “Dynamical studies of globular clusters based on photoelectric radial velocities of individual stars. I. M3”, Astron. J., 84, 752–773 (1979). [External LinkDOI], [External LinkADS].
188 Gürkan, M.A., Fregeau, J.M. and Rasio, F.A., “Massive Black Hole Binaries from Collisional Runaways”, Astrophys. J. Lett., 640, L39–L42 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0512642].
189 Gürkan, M.A., Freitag, M. and Rasio, F.A., “Formation of massive black holes in dense star clusters. I. Mass segregation and core collapse”, Astrophys. J., 604, 632–652 (2004). [External LinkDOI], [External LinkADS].
190 Hansen, B.M.S., Kalogera, V. and Rasio, F.A., “Helium core white dwarfs in globular clusters”, Astrophys. J., 586, 1364–1373 (2003). [External LinkDOI].
191 Hansen, B.M.S. et al., “Hubble Space Telescope observations of the white dwarf cooling sequence of M4”, Astrophys. J. Suppl. Ser., 155, 551–576 (2004). [External LinkDOI].
192 Harris, W.E., “Globular cluster systems in galaxies beyond the local group”, Annu. Rev. Astron. Astrophys., 29, 543–579 (1991). [External LinkDOI].
193 Harris, W.E., “A catalog of parameters for globular clusters in the Milky Way”, Astron. J., 112, 1487–1488 (1996). [External LinkDOI]. Online version (accessed 6 July 2012):
External Linkhttp://www.physics.mcmaster.ca/Globular.html.
194 Harris, W.E., “The Globular Cluster System in M87: A Wide-Field Study with CFHT/Megacam”, Astrophys. J., 703, 939–950 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0908.1120 [astro-ph.GA]].
195 Harris, W.E. and van den Bergh, S., “Globular clusters in galaxies beyond the local group. I. New cluster systems in selected northern ellipticals”, Astron. J., 86, 1627–1642 (1981). [External LinkDOI], [External LinkADS].
196 Heggie, D.C., “Binary evolution in stellar dynamics”, Mon. Not. R. Astron. Soc., 173, 729–787 (1975).
197 Heggie, D.C. and Giersz, M., “Monte Carlo simulations of star clusters – V. The globular cluster M4”, Mon. Not. R. Astron. Soc., 389, 1858–1870 (2008). [External LinkDOI], [External LinkADS].
198 Heggie, D.C., Giersz, M., Spurzem, R. and Takahashi, K., “Dynamical simulations: Methods and comparisons”, in Andersen, J., ed., Highlights of Astronomy, Proceedings of the 23rd IAU General Assembly, August 18 – 30, 1997, in Kyoto, Japan, Highlights of Astronomy, 11, p. 591, (Kluwer, Dordrecht, 1998).
199 Heggie, D.C. and Hut, P., The Gravitational Million-Body Problem: A Multidisciplinary Approach to Star Cluster Dynamics, (Campridge University Press, Cambridge; New York, 2003). Online version (accessed 27 January 2006):
External Linkhttp://www.ids.ias.edu/~piet/publ/gmbp.html.
200 Heggie, D.C. and Ramamani, N., “Approximate self-consistent models for tidally truncated star clusters”, Mon. Not. R. Astron. Soc., 272, 317–322 (1995). [External LinkADS].
201 Heggie, D.C., Trenti, M. and Hut, P., “Star clusters with primordial binaries – I. Dynamical evolution of isolated models”, Mon. Not. R. Astron. Soc., 368, 677–689 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0602408].
202 Heinke, C.O., “X-ray Sources in Galactic Globular Clusters”, in Kalogera, V. and van der Sluys, M., eds., International Conference on Binaries: In celebration of Ron Webbink’s 65th Birthday, Mykonos, Greece, 22 – 25 June 2010, AIP Conference Proceedings, 1314, pp. 135–142, (American Institute of Physics, Melville, NY, 2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1101.5356 [astro-ph.HE]].
203 Heinke, C.O., Edmonds, P.D. and Grindlay, J.E., “Identification of the LMXB and faint X-ray sources in NGC 6652”, Astrophys. J., 562, 363–367 (2001). [External LinkDOI], [External Linkastro-ph/0107513].
204 Heinke, C.O., Edmonds, P.D., Grindlay, J.E., Lloyd, D.A., Cohn, H.N. and Lugger, P.M., “A Chandra X-ray study of the dense globular cluster Terzan 5”, Astrophys. J., 590, 809–821 (2003). [External LinkDOI].
205 Heinke, C.O., Grindlay, J.E., Edmonds, P.D., Cohn, H.N., Lugger, P.M., Camilo, F., Bogdanov, S. and Freire, P.C., “A Deep Chandra Survey of the Globular Cluster 47 Tucanae: Catalog of Point Sources”, Astrophys. J., 625, 796–824 (2005). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0503132].
206 Heinke, C.O., Grindlay, J.E., Edmonds, P.D., Lloyd, D.A., Murray, S.S., Cohn, H.N. and Lugger, P.M., “A Chandra X-ray study of the globular cluster M80”, Astrophys. J., 598, 516–526 (2003).
207 Heinke, C.O., Grindlay, J.E., Lloyd, D.A. and Edmonds, P.D., “X-Ray Studies of Two Neutron Stars in 47 Tucanae: Toward Constraints on the Equation of State”, Astrophys. J., 588, 452–463 (2003). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0301235].
208 Heinke, C.O. et al., “Discovery of a Second Transient Low-Mass X-ray Binary in the Globular Cluster Ngc 6440”, Astrophys. J., 714, 894–903 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0911.0444 [astro-ph.HE]].
209 Hénon, M., “The Monte Carlo method”, Astrophys. Space Sci., 14, 151–167 (1971).
210 Hénon, M., “Monte Carlo models of star clusters”, Astrophys. Space Sci., 13, 284–299 (1971). [External LinkDOI].
211 Hénon, M., “Two Recent Developments Concerning the Monte Carlo Method”, in Hayli, A., ed., Dynamics of the Solar Systems, Proceedings of the 69th IAU Symposium held in Besancon, France, September 9 – 13, 1974, IAU Symposium, 69, pp. 133–149, (Reidel, Dordrecht, 1975). [External LinkADS].
212 Henze, M. et al., “The first two transient supersoft X-ray sources in M 31 globular clusters and the connection to classical novae”, Astron. Astrophys., 500, 769–779 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0811.0718].
213 Henze, M. et al., “Supersoft X-ray transient leads to the discovery of the second optical nova in a M 31 globular cluster”, Astron. Telegram, 3019, 1 (2010). [External LinkADS].
214 Hessels, J.W.T., Ransom, S.M., Stairs, I.H., Kaspi, V.M., Freire, P.C.C., Backer, D.C. and Lorimer, D.R., “A 20 cm Search for Pulsars in Globular Clusters with Arecibo and the GBT”, in Camilo, F. and Gaensler, B.M., eds., Young Neutron Stars and Their Environments, Proceedings of IAU Symposium 218, Sydney, Australia, 14 – 17 July 2003, IAU Symposia, 218, pp. 131–132, (Astronomical Society of the Pacific, San Francisco, 2004). [External LinkADS], [External Linkastro-ph/0402182].
215 Hilditch, R.W., An Introduction to Close Binary Stars, (Cambridge University Press, Cambridge; New York, 2001). [External LinkGoogle Books].
216 Hills, J.G., “Encounters between binary and single stars and their effect on the dynamical evolution of stellar systems”, Astron. J., 80, 809–825 (1975). [External LinkDOI], [External LinkADS].
217 Hills, J.G., “The formation of binaries containing black holes by the exchange of companions and the X-ray sources in globular clusters”, Mon. Not. R. Astron. Soc., 175, 1P–4P (1976). [External LinkADS].
218 Hills, J.G., “Encounters between single and binary stars: The effect of intruder mass on the maximum impact velocity for which the mean change in binding energy is positive”, Astron. J., 99, 979–982 (1990). [External LinkDOI].
219 Hills, J.G. and Fullerton, L.W., “Computer simulations of close encounters between single stars and hard binaries”, Astron. J., 85, 1281–1291 (1980). [External LinkDOI], [External LinkADS].
220 Hils, D., Bender, P.L. and Webbink, R.F., “Gravitational radiation from the Galaxy”, Astrophys. J., 360, 75–94 (1990). [External LinkDOI].
221 Hjellming, M.S. and Webbink, R.F., “Thresholds for rapid mass transfer in binary systems. I. Polytropic models”, Astrophys. J., 318, 794–808 (1987). [External LinkDOI].
222 Hobbs, G., Lorimer, D.R., Lyne, A.G. and Kramer, M., “A statistical study of 233 pulsar proper motions”, Mon. Not. R. Astron. Soc., 360, 974–992 (2005). [External LinkDOI], [External LinkADS], [External Linkastro-ph/0504584].
223 Holley-Bockelmann, K., Gültekin, K., Shoemaker, D. and Yunes, N., “Gravitational Wave Recoil and the Retention of Intermediate-Mass Black Holes”, Astrophys. J., 686, 829–837 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0707.1334].
224 Homer, L., Anderson, S.F., Margon, B. and Deutsch, E.W., “Optical identification of the X-ray burster in the globular cluster NGC 1851”, Astrophys. J. Lett., 550, L155–L157 (2001). [External LinkDOI].
225 Homer, L., Deutsch, E.W., Anderson, S.F. and Margon, B., “The rapid burster in Liller 1: the Chandra X-ray position and a search for an IR counterpart”, Astron. J., 122, 2627–2633 (2001). [External LinkDOI], [External Linkastro-ph/0106140].
226 Hopman, C., Guetta, D., Waxman, E. and Portegies Zwart, S., “The Redshift Distribution of Short Gamma-Ray Bursts from Dynamically Formed Neutron Star Binaries”, Astrophys. J. Lett., 643, L91–L94 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0603440].
227 Huang, R.H.H., Becker, W., Edmonds, P.D., Elsner, R.F., Heinke, C.O. and Hsieh, B.C., “Study of Hubble Space Telescope counterparts to Chandra X-ray sources in the globular cluster M 71”, Astron. Astrophys., 513, A16+ (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0912.1148 [astro-ph.SR]].
228 Hurley, J.R., “Ratios of star cluster core and half-mass radii: a cautionary note on intermediate-mass black holes in star clusters”, Mon. Not. R. Astron. Soc., 379, 93–99 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:0705.0748].
229 Hurley, J.R., Pols, O.R., Aarseth, S.J. and Tout, C.A., “A complete N-body model of the old open cluster M67”, Mon. Not. R. Astron. Soc., 363, 293–314 (2005). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0507239].
230 Hurley, J.R., Pols, O.R. and Tout, C.A., “Comprehensive analytic formulae for stellar evolution as a function of mass and metallicity”, Mon. Not. R. Astron. Soc., 315, 543–569 (2000). [External LinkDOI].
231 Hurley, J.R. and Shara, M.M., “White dwarf sequences in dense star clusters”, Astrophys. J., 589, 179–198 (2003). [External LinkDOI].
232 Hurley, J.R., Tout, C.A., Aarseth, S.J. and Pols, O.R., “Direct N-body modelling of stellar populations: Blue stragglers in M67”, Mon. Not. R. Astron. Soc., 323, 630–650 (2001). [External LinkDOI].
233 Hurley, J.R., Tout, C.A. and Pols, O.R., “Evolution of binary stars and the effect of tides on binary populations”, Mon. Not. R. Astron. Soc., 329, 897–928 (2002). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0201220].
234 Hurt, R.L., Jarrett, T.H., Kirkpatrick, J.D. and Cutri, R.M., “Serendipitous 2MASS discoveries near the galactic plane: A spiral galaxy and two globular clusters”, Astron. J., 120, 1876–1883 (2000). [External LinkDOI].
235 Hut, P., “Binary formation and interactions with field stars”, in Goodman, J. and Hut, P., eds., Dynamics of Star Clusters, roceedings of the Symposium, Princeton, NJ, May 29 – June 1, 1984, IAU Symposium, 113, pp. 231–247, (Reidel, Dordrecht, 1985). [External LinkADS].
236 Hut, P., “Blue Stragglers as Tracers of Globular Cluster Evolution”, in Saffer, R.E., ed., Blue Stragglers, Proceedings of the Stars Journal Club Miniworkshop, Space Telescope Science Inst., Baltimore, MD, October 12 – 13, 1992, ASP Conference Series, 53, pp. 44–59, (Astronomical Society of the Pacific, San Francisco, 1993). [External LinkADS], [External LinkarXiv:astro-ph/9303003].
237 Hut, P. and Bahcall, J.N., “Binary-single star scattering. I. Numerical experiments for equal masses”, Astrophys. J., 268, 319–341 (1983). [External LinkDOI], [External LinkADS].
238 Hut, P., McMillan, S.L.W., Makino, J. and Portegies Zwart, S.F., “Starlab: A Software Environment for Collisional Stellar Dynamics”, project homepage, Institute for Advanced Studies. URL (accessed 6 April 2011):
External Linkhttp://www.sns.ias.edu/~starlab/starlab.html.
239 Hut, P., McMillan, S. and Romani, R.W., “The evolution of a primordial binary population in a globular cluster”, Astrophys. J., 389, 527–545 (1992). [External LinkDOI].
240 Hut, P. and Verbunt, F., “White dwarfs and neutron stars in globular cluster X-ray sources”, Nature, 301, 587–589 (1983). [External LinkDOI], [External LinkADS].
241 Hut, P. et al., “Binaries in globular clusters”, Publ. Astron. Soc. Pac., 104, 981–1034 (1992). [External LinkDOI].
242 Iben Jr, I., Tutukov, A.V. and Yungelson, L.R., “Helium and carbon-oxygen white dwarfs in close binaries”, Astrophys. J., 475, 291–299 (1997). [External LinkDOI].
243 Irwin, J.A., Brink, T.G., Bregman, J.N. and Roberts, T.P., “Evidence for a Stellar Disruption by an Intermediate-mass Black Hole in an Extragalactic Globular Cluster”, Astrophys. J. Lett., 712, L1–L4 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0908.1115 [astro-ph.HE]].
244 Ivanova, N., Belczynski, K., Fregeau, J.M. and Rasio, F.A., “The evolution of binary fractions in globular clusters”, Mon. Not. R. Astron. Soc., 358, 572–584 (2005). [External LinkDOI].
245 Ivanova, N., Chaichenets, S., Fregeau, J., Heinke, C.O., Lombardi Jr, J.C. and Woods, T.E., “Formation of Black Hole X-ray Binaries in Globular Clusters”, Astrophys. J., 717, 948–957 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1001.1767 [astro-ph.HE]].
246 Ivanova, N., Heinke, C.O., Rasio, F.A., Belczynski, K. and Fregeau, J.M., “Formation and evolution of compact binaries in globular clusters – II. Binaries with neutron stars”, Mon. Not. R. Astron. Soc., 386, 553–576 (2008). [External LinkDOI], [External Link0706.409].
247 Ivanova, N., Heinke, C.O., Rasio, F.A., Taam, R.E., Belczynski, K. and Fregeau, J., “Formation and evolution of compact binaries in globular clusters – I. Binaries with white dwarfs”, Mon. Not. R. Astron. Soc., 372, 1043–1059 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0604085].
248 Ivanova, N., Rasio, F.A., Lombardi, J.C., Dooley, K.L. and Proulx, Z.F., “Formation of Ultracompact X-Ray Binaries in Dense Star Clusters”, Astrophys. J. Lett., 621, L109–L112 (2005). [External LinkDOI], [External LinkADS].
249 Jacoby, B.A., Chandler, A.M., Backer, D.C., Anderson, S.B. and Kulkarni, S.R., “Pulsars in M62”, IAU Circ., 7783, 1 (2002).
250 Jalali, B., Baumgardt, H., Kissler-Patig, M., Gebhardt, K., Noyola, E., Lützgendorf, N. and de Zeeuw, P.T., “A dynamical N-body model for the central region of ω Centauri”, Astron. Astrophys., 538, A19 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1111.5011 [astro-ph.GA]].
251 Johnston, H.M. and Verbunt, F., “The globular cluster population of low-luminosity X-ray sources”, Astron. Astrophys., 312, 80–87 (1996).
252 Joshi, K.J., Nave, C.P. and Rasio, F.A., “Monte Carlo simulations of globular cluster evolution. II. Mass spectra, stellar evolution, and lifetimes in the galaxy”, Astrophys. J., 550, 691–702 (2001). [External LinkDOI].
253 Joshi, K.J., Rasio, F.A. and Portegies Zwart, S.F., “Monte Carlo simulations of globular cluster evolution. I. Method and test calculations”, Astrophys. J., 540, 969–982 (2000). [External LinkDOI].
254 Kalogera, V., King, A.R. and Rasio, F.A., “Could black hole X-ray binaries be detected in globular clusters?”, Astrophys. J. Lett., 601, 171–174 (2004). [External LinkDOI].
255 KaƂuĆŒny, J. and Thompson, I.B., “Time series photometry of variable stars in the globular cluster NGC 6397”, Astron. J., 125, 2534–2542 (2003).
256 Katz, J.I., “Two kinds of stellar collapse”, Nature, 253, 698–699 (1975). [External LinkDOI], [External LinkADS].
257 Khalisi, E., Amaro-Seoane, P. and Spurzem, R., “A comprehensive NBODY study of mass segregation in star clusters: energy equipartition and escape”, Mon. Not. R. Astron. Soc., 374, 703–720 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0602570].
258 Kim, D.-W. and Fabbiano, G., “X-Ray Luminosity Function and Total Luminosity of Low-Mass X-Ray Binaries in Early-Type Galaxies”, Astrophys. J., 611, 846–857 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0312104].
259 Kim, D.-W. et al., “Comparing GC and Field LMXBs in Elliptical Galaxies with Deep Chandra and Hubble Data”, Astrophys. J. Lett., 703, 829–844 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0902.2343 [astro-ph.CO]].
260 Kim, E., Einsel, C., Lee, H.M., Spurzem, R. and Lee, M.G., “Dynamical evolution of rotating stellar systems – II. Post-collapse, equal mass system”, Mon. Not. R. Astron. Soc., 334, 310–322 (2002). [External LinkDOI], [External Linkastro-ph/0109062].
261 Kim, E., Kim, D.-W., Fabbiano, G., Lee, M.G., Park, H.S., Geisler, D. and Dirsch, B., “Low-Mass X-Ray Binaries in Six Elliptical Galaxies: Connection to Globular Clusters”, Astrophys. J., 647, 276–292 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0510817].
262 Kim, E., Yoon, I., Lee, H.M. and Spurzem, R., “Comparative study between N-body and Fokker–Planck simulations for rotating star clusters – I. Equal-mass system”, Mon. Not. R. Astron. Soc., 383, 2–10 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0709.4318].
263 King, A.R., Frank, J., Kolb, U. and Ritter, H., “Global analysis of mass transfer cycles in cataclysmic variables”, Astrophys. J., 467, 761–772 (1996). [External LinkDOI].
264 King, I.R., “The structure of star clusters. III. Some simple dynamical models”, Astron. J., 71, 64–75 (1966). [External LinkDOI], [External LinkADS].
265 King, I.R. et al., “Detection of an ultraviolet and visible counterpart of the NGC 6624 X-ray burster”, Astrophys. J. Lett., 413, L117–L120 (1993). [External LinkDOI].
266 Knigge, C., “Far-ultraviolet surveys of globular clusters: Hunting for the products of stellar collisions and near misses”, Mod. Phys. Lett. A, 19, 2013–2027 (2004). [External LinkDOI], [External Linkastro-ph/0407054].
267 Knigge, C., Baraffe, I. and Patterson, J., “The Evolution of Cataclysmic Variables as Revealed by Their Donor Stars”, Astrophys. J. Suppl. Ser., 194, 28 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1102.2440 [astro-ph.SR]].
268 Knigge, C., Leigh, N. and Sills, A., “A binary origin for ‘blue stragglers’ in globular clusters”, Nature, 457, 288–290 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0901.2345 [astro-ph.SR]].
269 Knigge, C., Shara, M.M., Zurek, D.R., Long, K.S. and Gilliland, R.L., “A Far-Ultraviolet Spectroscopic Survey of the Globular Cluster 47 Tuc”, in Shara, M.M., ed., Stellar Collisions, Mergers and their Consequences, Proceedings of the conference held in New York, USA, 30 May – 2 June, 2000, ASP Conference Proceedings, 263, p. 137, (Astronomical Society of the Pacific, San Francisco, 2002). [External Linkastro-ph/0012187].
270 Knigge, C., Zurek, D.R., Shara, M.M. and Long, K.S., “A far-ultraviolet survey of 47 Tucanae. I. Imaging”, Astrophys. J., 579, 752–759 (2002). [External LinkDOI].
271 Kobulnicky, H.A. et al., “Discovery of a New Low-Latitude Milky Way Globular Cluster using GLIMPSE”, Astron. J., 129, 239–250 (2005). [External LinkDOI], [External Linkastro-ph/0410400].
272 Kong, A.K.H., “X-Ray Localization of the Globular Cluster G1 with XMM-Newton”, Astrophys. J., 661, 875–878 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0703662].
273 Kong, A.K.H., Bassa, C., Pooley, D., Lewin, W.H.G., Homer, L., Verbunt, F., Anderson, S.F. and Margon, B., “Chandra and Hubble Space Telescope Study of the Globular Cluster NGC 288”, Astrophys. J., 647, 1065–1074 (2006). [External LinkDOI], [External Linkastro-ph/0603374].
274 Kong, A.K.H., Heinke, C.O., Di Stefano, R., Cohn, H.N., Lugger, P.M., Barmby, P., Lewin, W.H.G. and Primini, F.A., “Localization of the X-ray source in the globular cluster G1 with Chandra”, Mon. Not. R. Astron. Soc., 407, L84–L88 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0910.3944 [astro-ph.HE]].
275 Konstantinidis, S., Amaro-Seoane, P. and Kokkotas, K.D., “Kicking massive black holes off clusters: Intermediate-mass ratio inspirals”, arXiv, e-print, (2011). [External LinkADS], [External LinkarXiv:1108.5175 [astro-ph.CO]].
276 Kozai, Y., “Secular perturbations of asteroids with high inclination and eccentricity”, Astron. J., 67, 591–598 (1962). [External LinkDOI], [External LinkADS].
277 Krolik, J.H., “The appearance, number, and history of highly compact binary systems in globular clusters”, Astrophys. J., 282, 452–465 (1984). [External LinkDOI], [External LinkADS].
278 Krolik, J.H., Meiksin, A. and Joss, P.C., “The evolution of highly compact binary stellar systems in globular clusters”, Astrophys. J., 282, 466–480 (1984). [External LinkDOI], [External LinkADS].
279 Kroupa, P., “On the variation of the initial mass function”, Mon. Not. R. Astron. Soc., 322, 231–246 (2001). [External LinkDOI].
280 Kroupa, P. and Weidner, C., “Galactic-Field Initial Mass Functions of Massive Stars”, Astrophys. J., 598, 1076–1078 (2003). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0308356].
281 Kulkarni, S.R., Hut, P. and McMillan, S., “Stellar black holes in globular clusters”, Nature, 364, 421–423 (1993). [External LinkDOI].
282 Kundu, A., Maccarone, T.J. and Zepf, S.E., “The Low-Mass X-Ray Binary-Globular Cluster Connection in NGC 4472”, Astrophys. J. Lett., 574, L5–L9 (2002). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0206221].
283 Kundu, A., Maccarone, T.J. and Zepf, S.E., “Probing the Formation of Low-Mass X-Ray Binaries in Globular Clusters and the Field”, Astrophys. J., 662, 525–543 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0703092].
284 Kupi, G., Amaro-Seoane, P. and Spurzem, R., “Dynamics of compact object clusters: a post-Newtonian study”, Mon. Not. R. Astron. Soc., 371, L45–L49 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0602125].
285 Lanzoni, B., Dalessandro, E., Ferraro, F.R., Miocchi, P., Valenti, E. and Rood, R.T., “The Surface Density Profile of NGC 6388: A Good Candidate for Harboring an Intermediate-Mass Black Hole”, Astrophys. J. Lett., 668, L139–L142 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:0709.0119].
286 Lanzoni, B., Dalessandro, E., Perina, S., Ferraro, F.R., Rood, R.T. and Sollima, A., “The Surprising External Upturn of the Blue Straggler Radial Distribution in M55”, Astrophys. J. Lett., 670, 1065–1073 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:0709.1609].
287 “Large-scale Cryogenic Gravitational wave Telescope”, project homepage, University of Tokyo. URL (accessed 8 October 2011):
External Linkhttp://gw.icrr.u-tokyo.ac.jp/lcgt/.
288 Larson, R.B., “A method for computing the evolution of star clusters”, Mon. Not. R. Astron. Soc., 147, 323–337 (1970). [External LinkADS].
289 Lee, H.M., “Evolution of globular clusters including a degenerate component”, Astrophys. J., 319, 772–800 (1987). [External LinkDOI], [External LinkADS].
290 Lee, H.M. and Ostriker, J.P., “Cross sections for tidal capture binary formation and stellar merger”, Astrophys. J., 310, 176–188 (1986). [External LinkDOI], [External LinkADS].
291 Leigh, N., Sills, A. and Knigge, C., “Where the blue stragglers roam: searching for a link between formation and environment”, Astrophys. J., 661, 210–221 (2007). [External LinkDOI].
292 Leigh, N., Sills, A. and Knigge, C., “Dissecting the colour-magnitude diagram: a homogeneous catalogue of stellar populations in globular clusters”, Mon. Not. R. Astron. Soc., 415, 3771–3782 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1105.3192 [astro-ph.SR]].
293 Li, Z. et al., “X-ray Emission from the Sombrero Galaxy: Discrete Sources”, Astrophys. J., 721, 1368–1382 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1008.2395 [astro-ph.CO]].
294 Liu, J.-F. and Bregman, J.N., “Ultraluminous X-Ray Sources in Nearby Galaxies from ROSAT High Resolution Imager Observations I. Data Analysis”, Astrophys. J. Suppl. Ser., 157, 59–125 (2005). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0501309].
295 Lombardi Jr, J.C., Proulx, Z.F., Dooley, K.L., Theriault, E.M., Ivanova, N. and Rasio, F.A., “Stellar Collisions and Ultracompact X-Ray Binary Formation”, Astrophys. J., 640, 441–458 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0509511].
296 Lorimer, D.R., “Binary and Millisecond Pulsars”, Living Rev. Relativity, 11, lrr-2008-8 (2008). [External LinkarXiv:0811.0762 [astro-ph]]. URL (accessed 07 November 2012):
http://www.livingreviews.org/lrr-2008-8.
297 Lou, Y.-Q. and Wu, Y., “Intermediate-mass black holes in globular clusters”, Mon. Not. R. Astron. Soc., 422, L28–L32 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1201.5693 [astro-ph.HE]].
298 Louis, P.D. and Spurzem, R., “Anisotropic gaseous models for the evolution of star clusters”, Mon. Not. R. Astron. Soc., 251, 408–426 (1991).
299 “LSC: LIGO Scientific Collaboration”, project homepage, LIGO. URL (accessed 8 October 2011):
External Linkhttp://www.ligo.org/.
300 Lu, T.-N. and Kong, A.K.H., “Radio Continuum Observations of 47 Tucanae and ω Centauri: Hints for Intermediate-mass Black Holes?”, Astrophys. J. Lett., 729, L25 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1102.1668 [astro-ph.SR]].
301 Lugger, P.M., Cohn, H.N., Heinke, C.O., Grindlay, J.E. and Edmonds, P.D., “Chandra X-Ray Sources in the Collapsed-Core Globular Cluster M30 (NGC 7099)”, Astrophys. J., 657, 286–301 (2007). [External LinkDOI], [External LinkADS].
302 Lützgendorf, N., Kissler-Patig, M., Gebhardt, K., Baumgardt, H., Noyola, E., Jalali, B., de Zeeuw, P.T. and Neumayer, N., “Central kinematics of the globular cluster NGC 2808: upper limit on the mass of an intermediate-mass black hole”, Astron. Astrophys., 542, A129 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1204.4074 [astro-ph.GA]].
303 Lützgendorf, N., Kissler-Patig, M., Noyola, E., Jalali, B., de Zeeuw, P.T., Gebhardt, K. and Baumgardt, H., “Kinematic signature of an intermediate-mass black hole in the globular cluster NGC 6388”, Astron. Astrophys., 533, A36 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1107.4243 [astro-ph.GA]].
304 Lyne, A.G., Brinklow, A., Middleditch, J., Kulkarni, S.R. and Backer, D.C., “The discovery of a millisecond pulsar in the globular cluster M28”, Nature, 328, 399–401 (1987). [External LinkDOI], [External LinkADS].
305 Maccarone, T.J., “Radio emission as a test of the existence of intermediate-mass black holes in globular clusters and dwarf spheroidal galaxies”, Mon. Not. R. Astron. Soc., 351, 1049–1053 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0403530].
306 Maccarone, T.J. and Knigge, C., “Compact objects in globular clusters”, Astron. Geophys., 48(5), 5.12–5.20 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:0709.3732].
307 Maccarone, T.J., Kundu, A. and Zepf, S.E., “An Explanation for Metallicity Effects on X-Ray Binary Properties”, Astrophys. J., 606, 430–435 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0401333].
308 Maccarone, T.J., Kundu, A., Zepf, S.E. and Rhode, K.L., “A black hole in a globular cluster”, Nature, 445, 183–185 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0701310].
309 Maccarone, T.J., Kundu, A., Zepf, S.E. and Rhode, K.L., “Fading of the X-ray flux from the black hole in the NGC 4472 globular cluster RZ 2109”, Mon. Not. R. Astron. Soc., 409, L84–L88 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1009.2827 [astro-ph.HE]].
310 Maccarone, T.J., Kundu, A., Zepf, S.E. and Rhode, K.L., “A new globular cluster black hole in NGC 4472”, Mon. Not. R. Astron. Soc., 410, 1655–1659 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1008.2896 [astro-ph.HE]].
311 Maccarone, T.J. and Servillat, M., “Radio observations of NGC 2808 and other globular clusters: constraints on intermediate-mass black holes”, Mon. Not. R. Astron. Soc., 389, 379–384 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0806.2387].
312 Maccarone, T.J. and Servillat, M., “Erratum: Radio observations of NGC 2808 and other globular clusters: constraints on intermediate-mass black holes”, Mon. Not. R. Astron. Soc., 408, 2511–2512 (2010). [External LinkDOI], [External LinkADS].
313 Maccarone, T.J. and Warner, B., “Strong [O III] and [N II] emission lines in globular clusters from photoionized R Corona Borealis star winds”, Mon. Not. R. Astron. Soc., 410, L32–L36 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1010.6093 [astro-ph.HE]].
314 MacNamara, B.J., Harrison, T.E. and Anderson, J., “Does M15 possess an intermediate-mass black hole in its core?”, Astrophys. J., 595, 187–194 (2003). [External LinkDOI].
315 Madsen, S., “Hyades dynamics from N-body simulations: Accuracy of astrometric radial velocities from Hipparcos”, Astron. Astrophys., 401, 565–576 (2003). [External LinkDOI].
316 Makino, J., “Special-purpose computing for dense stellar systems”, in van der Hucht, K.A., ed., Highlights of Astronomy, Proceedings of the IAU XXVI General Assembly, Prague, Czech Republic, 14 – 25 August 2006, Highlights of Astronomy, 14, pp. 424–425, (Cambridge University Press, Cambridge; New York, 2007). [External LinkDOI], [External LinkADS], [External LinkGoogle Books].
317 Makino, J. and Aarseth, S.J., “On a Hermite integrator with Ahmad-Cohen scheme for gravitational many-body problems”, Publ. Astron. Soc. Japan, 44, 141–151 (1992). [External LinkADS].
318 Makino, J. and Taiji, M., Scientific Simulations with Special-Purpose Computers: The GRAPE Systems, (Wiley, Chichester; New York, 1998).
319 Margon, B., Downes, R.A. and Gunn, J.E., “M5 V101: A close binary system in a globular cluster”, Astrophys. J. Lett., 247, L89–L92 (1981). [External LinkDOI].
320 Marino, A.F. et al., “Sodium-Oxygen Anticorrelation and Neutron-capture Elements in Omega Centauri Stellar Populations”, Astrophys. J., 731, 64 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1102.1653 [astro-ph.SR]].
321 Marino, A.F. et al., “The two metallicity groups of the globular cluster M 22: a chemical perspective”, Astron. Astrophys., 532, A8 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1105.1523 [astro-ph.SR]].
322 McLaughlin, D.E., Anderson, J., Meylan, G., Gebhardt, K., Pryor, C., Minniti, D. and Phinney, S., “Hubble Space Telescope Proper Motions and Stellar Dynamics in the Core of the Globular Cluster 47 Tucanae”, Astrophys. J. Suppl. Ser., 166, 249–297 (2006). [External LinkDOI], [External Linkastro-ph/0607597].
323 McMillan, S.L.W., Pryor, C. and Phinney, E.S., “Binaries in globular clusters”, in Anderson, J., ed., Highlights of Astronomy, Proceedings of the 23rd IAU General Assembly, August 18 – 30, 1997, in Kyoto, Japan, Highlights of Astronomy, 11A, p. 616, (Kluwer, Dordrecht, 1998).
324 McMillan, S.L.W., Taam, R.E. and McDermott, P.N., “On the formation of red giant binaries by tidal capture”, Astrophys. J., 354, 190–200 (1990). [External LinkDOI], [External LinkADS].
325 Meylan, G., “Internal Dynamics of Globular Clusters”, in Gurzadyan, V.G. and Ruffini, R., eds., The Chaotic Universe, Proceedings of the Second ICRA Network Workshop, Rome, Pescara, Italy, 1 – 5 February 1999, Advanced Series in Astrophysics and Cosmology, 10, pp. 76–106, (World Scientific, Singapore; River Edge, NJ, 2000). [External Linkastro-ph/9912495].
326 Meylan, G. and Heggie, D.C., “Internal dynamics of globular clusters”, Astron. Astrophys. Rev., 8, 1–143 (1997). [External LinkDOI].
327 Michie, R.W. and Bodenheimer, P.H., “The dynamics of spherical stellar systems. II. – Theoretical models”, Mon. Not. R. Astron. Soc., 126, 269–281 (1963). [External LinkADS].
328 Middleditch, J. and Kristian, J., “A search for young, luminous optical pulsars in extragalactic supernova remnants”, Astrophys. J., 279, 157–161 (1984). [External LinkDOI].
329 Mikkola, S., “Heating of stellar systems by binary collisions”, Mon. Not. R. Astron. Soc., 205, 733–745 (1983). [External LinkADS].
330 Mikkola, S., “Encounters of binaries – II. Unequal energies”, Mon. Not. R. Astron. Soc., 207, 115–126 (1984). [External LinkADS].
331 Mikkola, S., “Encounters of binaries – III. Fly-bys”, Mon. Not. R. Astron. Soc., 208, 75–82 (1984). [External LinkADS].
332 Miller, J.M., Maitra, D., Cackett, E.M., Bhattacharyya, S. and Strohmayer, T.E., “A Fast X-ray Disk Wind in the Transient Pulsar IGR J17480–2446 in Terzan 5”, Astrophys. J. Lett., 731, L7 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1101.2377 [astro-ph.HE]].
333 Miller, M.C. and Colbert, E.J.M., “Intermediate mass black holes”, Int. J. Mod. Phys. D, 13, 1–64 (2004).
334 Miller, M.C. and Hamilton, D.P., “Production of intermediate-mass black holes in globular clusters”, Mon. Not. R. Astron. Soc., 330, 232–240 (2002). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0106188].
335 Miller, R.H., “Irreversibility in Small Stellar Dynamical Systems”, Astrophys. J., 140, 250–256 (1964). [External LinkDOI], [External LinkADS].
336 Miller, R.H., “Polarization of the Stellar Dynamical Medium”, Astrophys. J., 146, 831–837 (1966). [External LinkDOI], [External LinkADS].
337 Milone, A.P., Bedin, L.R., Piotto, G. and Anderson, J., “Multiple stellar populations in Magellanic Cloud clusters. I. An ordinary feature for intermediate age globulars in the LMC?”, Astron. Astrophys., 497, 755–771 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0810.2558].
338 Milone, A.P., Piotto, G., Bedin, L.R., Marino, A.F., Momany, Y. and Villanova, S., “Multiple stellar populations in the Globular Clusters NGC1851 and NGC6656 (M22)”, Mem. Soc. Astron. Ital. Suppl., 19, 173 (2012). [External LinkADS], [External LinkarXiv:1107.2056 [astro-ph.SR]].
339 Miocchi, P., “Central energy equipartition in multimass models of globular clusters”, Mon. Not. R. Astron. Soc., 366, 227–234 (2005). [External Linkastro-ph/0511263].
340 “MODEST: Modeling and Observing DEnse STellar systems”, project homepage, Manybody. URL (accessed 07 November 2012):
External Linkhttp://www.manybody.org/modest/.
341 Moeckel, N. and Clarke, C.J., “Collisional formation of very massive stars in dense clusters”, Mon. Not. R. Astron. Soc., 410, 2799–2806 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1009.0283 [astro-ph.SR]].
342 Moehler, S., Heber, U., Napiwotzki, R., Koester, D. and Renzini, A., “First VLT spectra of white dwarfs in a globular cluster”, Astron. Astrophys., 354, L75–L78 (2000).
343 Moehler, S., Koester, D., Zoccali, M., Ferraro, F.R., Heber, U., Napiwotzki, R. and Renzini, A., “Spectral types and masses of white dwarfs in globular clusters”, Astron. Astrophys., 420, 515–525 (2004). [External LinkDOI], [External Linkastro-ph/0403245].
344 Monelli, M. et al., “The discovery of more than 2000 white dwarfs in the globular cluster ω Centauri”, Astrophys. J. Lett., 621, 117–120 (2005). [External LinkDOI].
345 Moody, K. and Sigurdsson, S., “Modeling the Retention Probability of Black Holes in Globular Clusters: Kicks and Rates”, Astrophys. J., 690, 1370–1377 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0809.1617].
346 Mould, J. and Aaronson, M., “Carbon stars in the globular clusters of the Magellanic Clouds”, Astrophys. J., 232, 421–427 (1979). [External LinkDOI], [External LinkADS].
347 Mukai, K. and Smale, A.P., “The low-mass X-ray binary X1832-330 in the globular cluster NGC 6652: A serendipitous ASCA observation”, Astrophys. J., 533, 352–357 (2000). [External LinkDOI].
348 Murray, N., “The Sizes and Luminosities of Massive Star Clusters”, Astrophys. J., 691, 946–962 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0809.4320].
349 Neill, J.D., Shara, M.M., Caulet, A. and Buckley, D.A.H., “The first orbital period for a dwarf nova in a globular cluster: V101 in M5”, Astron. J., 123, 3298–3304 (2002). [External LinkDOI].
350 Nelemans, G., Portegies Zwart, S.F., Verbunt, F. and Yungelson, L.R., “Population synthesis for double white dwarfs. II. Semi-detached systems: AM CVn stars”, Astron. Astrophys., 368, 939–949 (2001). [External LinkADS].
351 Nelemans, G., Verbunt, F., Yungelson, L.R. and Portegies Zwart, S.F., “Reconstructing the evolution of double helium white dwarfs: envelope loss without spiral-in”, Astron. Astrophys., 360, 1011–1018 (2000). [External LinkADS], [External LinkarXiv:astro-ph/0006216].
352 Nelemans, G., Yungelson, L.R., Portegies Zwart, S.F. and Verbunt, F., “Populations synthesis for double white dwarfs. I. Close detached systems”, Astron. Astrophys., 365, 491–507 (2001).
353 “NEMO - A Stellar Dynamics Toolbox”, project homepage, University of Maryland (BIMA). URL (accessed 07 November 2012):
External Linkhttp://bima.astro.umd.edu/nemo/.
354 Nieto, J.-L. et al., “The optical counterpart of the X-ray binary in the globular cluster NGC 6712”, Astron. Astrophys., 239, 155–162 (1990).
355 North, P. and Zahn, J.-P., “Circularization in B-type eclipsing binariesin the Magellanic Clouds”, Astron. Astrophys., 405, 677–684 (2003). [External LinkDOI], [External LinkADS].
356 Noyola, E. and Baumgardt, H., “Testing Photometric Diagnostics for the Dynamical State and Possible Intermediate-mass Black Hole Presence in Globular Clusters”, Astrophys. J., 743, 52 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1108.4425 [astro-ph.GA]].
357 Noyola, E., Gebhardt, K. and Bergmann, M., “Gemini and Hubble Space Telescope Evidence for an Intermediate Mass Black Hole in ω Centauri”, Astrophys. J., 676, 1008–1015 (2008). [External LinkDOI], [External Link0801.27].
358 Noyola, E., Gebhardt, K., Kissler-Patig, M., Lützgendorf, N., Jalali, B., de Zeeuw, P.T. and Baumgardt, H., “Very Large Telescope Kinematics for Omega Centauri: Further Support for a Central Black Hole”, Astrophys. J. Lett., 719, L60–L64 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1007.4559 [astro-ph.GA]].
359 Nucita, A.A., de Paolis, F., Ingrosso, G., Carpano, S. and Guainazzi, M., “XMM-Newton and Chandra observations of the globular cluster NGC 6388”, Astron. Astrophys., 478, 763–768 (2008). [External LinkDOI], [External LinkADS].
360 O’Leary, R.M., Rasio, F.A., Fregeau, J.M., Ivanova, N. and O’Shaughnessy, R., “Binary Mergers and Growth of Black Holes in Dense Star Clusters”, Astrophys. J., 637, 937–951 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0508224].
361 PaczyƄski, B., “Common envelope binaries”, in Eggleton, P.P., Mitton, S. and Whelan, J., eds., Structure and Evolution of Close Binary Systems, IAU Symposium no. 73 held in Cambridge, England, 28 July – 1 August 1975, pp. 75–80, (D. Reidel, Dordrecht; Boston, 1976). [External LinkADS].
362 Padmanabhan, T., Theoretical Astrophysics, Volume I: Astrophysical Processes, (Cambridge University Press, Cambridge; New York, 2000).
363 Padmanabhan, T., Theoretical Astrophysics, Volume II: Stars and Stellar Systems, (Cambridge University Press, Cambridge; New York, 2001).
364 Paolillo, M., Puzia, T.H., Goudfrooij, P., Zepf, S.E., Maccarone, T.J., Kundu, A., Fabbiano, G. and Angelini, L., “Probing the GC-LMXB Connection in NGC 1399: A Wide-field Study with the Hubble Space Telescope and Chandra”, Astrophys. J., 736, 90 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1105.2561 [astro-ph.HE]].
365 Paresce, F. and De Marchi, G., “A dwarf nova in the core of 47 Tucanae”, Astrophys. J. Lett., 427, L33–L35 (1994). [External LinkDOI].
366 Paresce, F., De Marchi, G. and Romaniello, M., “Very low mass stars and white dwarfs in NGC 6397”, Astrophys. J., 440, 216–226 (1995). [External LinkDOI].
367 Pasquali, A., De Marchi, G., Pulone, L. and Brigas, M.S., “The global mass function of M15”, Astron. Astrophys., 428, 469–478 (2004). [External LinkDOI].
368 Peacock, M.B., Maccarone, T.J., Kundu, A. and Zepf, S.E., “A systematic study of low-mass X-ray binaries in the M31 globular cluster system”, Mon. Not. R. Astron. Soc., 407, 2611–2624 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1006.0449 [astro-ph.HE]].
369 Perets, H.B. and Fabrycky, D.C., “On the Triple Origin of Blue Stragglers”, Astrophys. J., 697, 1048–1056 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0901.4328 [astro-ph.SR]].
370 Peters, P.C., “Gravitational Radiation and the Motion of Two Point Masses”, Phys. Rev., 136, B1224–B1232 (1964). [External LinkDOI], [External LinkADS].
371 Peters, P.C. and Mathews, J., “Gravitational radiation from point masses in a Keplerian orbit”, Phys. Rev., 131, 435–440 (1963). [External LinkDOI].
372 Pfahl, E., Rappaport, S. and Podsiadlowski, P., “A Comprehensive Study of Neutron Star Retention in Globular Clusters”, Astrophys. J., 573, 283–305 (2002). [External LinkDOI], [External LinkADS].
373 Pfahl, E., Rappaport, S., Podsiadlowski, P. and Spruit, H., “A New Class of High-Mass X-Ray Binaries: Implications for Core Collapse and Neutron Star Recoil”, Astrophys. J., 574, 364–376 (2002). [External LinkDOI], [External LinkADS].
374 Pietrukowicz, P., Kaluzny, J., Schwarzenberg-Czerny, A., Thompson, I.B., Pych, W., Krzeminski, W. and Mazur, B., “Cluster AgeS Experiment (CASE): deficiency of observed dwarf novae in globular clusters”, Mon. Not. R. Astron. Soc., 388, 1111–1126 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0804.1122].
375 Pietsch, W., Henze, M., Haberl, F. and Burwitz, V., “Swift XRT discovery of the third supersoft X-ray transient in a M 31 globular cluster”, Astron. Telegram, 3013, 1 (2010). [External LinkADS].
376 Piotto, G., “Observational Evidence of Multiple Stellar Populations in Star Clusters”, Publ. Korean Astron. Soc., 25, 91–99 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0902.1422 [astro-ph.SR]].
377 Piotto, G. et al., “Relative frequencies of blue stragglers in galactic globular clusters: Constraints for the formation mechanisms”, Astrophys. J. Lett., 604, 109–112 (2004). [External LinkDOI].
378 Plummer, H.C., “On the problem of distribution in globular star clusters”, Mon. Not. R. Astron. Soc., 71, 460–470 (1911). [External LinkADS].
379 Podsiadlowski, P., Rappaport, S. and Pfahl, E.D., “Evolutionary Sequences for Low- and Intermediate-Mass X-Ray Binaries”, Astrophys. J., 565, 1107–1133 (2002). [External LinkDOI], [External LinkADS].
380 Pooley, D. and Rappaport, S., “X-Rays from the Globular Cluster G1: Intermediate-Mass Black Hole or Low-Mass X-Ray Binary?”, Astrophys. J. Lett., 644, L45–L48 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0605049].
381 Pooley, D. et al., “Chandra observation of the globular cluster NGC 6440 and the nature of cluster X-ray luminosity functions”, Astrophys. J., 573, 184–190 (2002). [External LinkDOI].
382 Pooley, D. et al., “Optical identification of multiple faint X-ray sources in the globular cluster NGC 6752: Evidence for numerous cataclysmic variables”, Astrophys. J., 569, 405–417 (2002). [External LinkDOI].
383 Popov, S.B. and Prokhorov, M.E., “Evolution of isolated neutron stars in globular clusters: Number of accretors”, Astron. Astrophys. Trans., 21, 217–221 (2002). [External LinkDOI], [External Linkastro-ph/0102201].
384 Portegies Zwart, S., “Astrophysical Multipurpose Software Environment”, project homepage, Leiden Observatory. URL (accessed 6 April 2011):
External Linkhttp://www.amusecode.org.
385 Portegies Zwart, S.F., Baumgardt, H., Hut, P., Makino, J. and McMillan, S.L.W., “The formation of massive black holes through collision runaway in dense young stellar clusters”, Nature, 428, 724–726 (2004).
386 Portegies Zwart, S.F., Hut, P., McMillan, S.L.W. and Makino, J., “Star cluster ecology – V. Dissection of an open star cluster: spectroscopy”, Mon. Not. R. Astron. Soc., 351, 473–486 (2004). [External LinkDOI].
387 Portegies Zwart, S.F., Hut, P., McMillan, S.L.W. and Verbunt, F., “Star cluster ecology. II. Binary evolution with single-star encounters”, Astron. Astrophys., 328, 143–157 (1997). [External LinkADS], [External LinkarXiv:astro-ph/9706090].
388 Portegies Zwart, S.F. and McMillan, S.L.W., “Black hole mergers in the universe”, Astrophys. J. Lett., 528, L17–L20 (2000). [External LinkDOI], [External Linkgr-qc/9910061].
389 Portegies Zwart, S.F. and McMillan, S.L.W., “The Runaway Growth of Intermediate-Mass Black Holes in Dense Star Clusters”, Astrophys. J., 576, 899–907 (2002). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0201055].
390 Portegies Zwart, S.F., McMillan, S.L.W., Hut, P. and Makino, J., “Star cluster ecology – IV. Dissection of an open star cluster: photometry”, Mon. Not. R. Astron. Soc., 321, 199–226 (2001).
391 Portegies Zwart, S.F. and Verbunt, F., “Population synthesis of high-mass binaries”, Astron. Astrophys., 309, 179–196 (1996).
392 Postnov, K.A. and Yungelson, L.R., “The Evolution of Compact Binary Star Systems”, Living Rev. Relativity, 9, lrr-2006-6 (2006). [External LinkADS], [External LinkarXiv:astro-ph/0701059]. URL (accessed 07 November 2012):
http://www.livingreviews.org/lrr-2006-6.
393 Press, W.H. and Teukolsky, S.A., “On formation of close binaries by two-body tidal capture”, Astrophys. J., 213, 183–192 (1977). [External LinkDOI], [External LinkADS].
394 Priedhorsky, W. and Terrell, J., “Discovery of a 176 day period in 4U 1820-30”, Astrophys. J. Lett., 284, L17–L20 (1984). [External LinkDOI], [External LinkADS].
395 Prodan, S. and Murray, N., “On the Dynamics and Tidal Dissipation Rate of the White Dwarf in 4U 1820-30”, Astrophys. J., 747, 4 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1110.6655 [astro-ph.SR]].
396 Ptak, A., Colbert, E., van der Marel, R.P., Roye, E., Heckman, T. and Towne, B., “Optical Counterparts of Ultraluminous X-Ray Sources Identified from Archival HST WFPC2 Images”, Astrophys. J. Suppl. Ser., 166, 154–187 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0605561].
397 “Pulsars in globular clusters”, personal homepage, National Astronomy and Ionospheric Center. URL (accessed 07 November 2012):
External Linkhttp://www.naic.edu/~pfreire/GCpsr.html.
398 Ramirez-Ruiz, E. and Rosswog, S., “The Star Ingesting Luminosity of Intermediate-Mass Black Holes in Globular Clusters”, Astrophys. J. Lett., 697, L77–L80 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0808.3847].
399 Ramsay, G. and Wu, K., “Chandra observations of the globular cluster M 54”, Astron. Astrophys., 447, 199–203 (2006). [External LinkDOI], [External Linkastro-ph/0510217].
400 Ransom, S.M., Greenhill, L.J., Herrnstein, J.R., Manchester, R.N., Camilo, F., Eikenberry, S.S. and Lyne, A.G., “A binary millisecond pulsar in globular cluster NGC 6544”, Astrophys. J. Lett., 546, L25–L28 (2001). [External LinkDOI].
401 Rappaport, S., Nelson, L.A., Ma, C.-P. and Joss, P.C., “The evolutionary status of 4U 1820-30”, Astrophys. J., 322, 842–851 (1987). [External LinkDOI].
402 Rappaport, S., Pfahl, E., Rasio, F.A. and Podsiadlowski, P., “Formation of Compact Binaries in Globular Clusters”, in Podsiadlowski, P., Rappaport, A., King, R., D’Antona, F. and Burder, L., eds., Evolution of Binary and Multiple Star Systems: A Meeting in Celebration of Peter Eggleton’s 60th Birthday, Bormio, Italy, 25th June – 1 July 2000, ASP Conference Series, 229, p. 409, (Astronomical Society of the Pacific, San Francisco, 2001). [External Linkastro-ph/0101535].
403 Rappaport, S., Putney, A. and Verbunt, F., “Evolution of wide binary millisecond pulsars in globular clusters”, Astrophys. J., 345, 210–221 (1989). [External LinkDOI], [External LinkADS].
404 Rasio, F.A., Fregeau, J.M. and Joshi, K.J., “Binaries and globular cluster dynamics”, in Vanbeveren, D., ed., The Influence of Binaries on Stellar Population Studies, Proceedings of the conference, held in Brussels, Belgium, 21 – 25 August 2000, Astrophysics and Space Science Library, 264, pp. 387–401, (Kluwer Academic Publishers, Dordrecht; Boston, 2001). [External Linkastro-ph/0103001].
405 Rasio, F.A., Pfahl, E.D. and Rappaport, S., “Formation of Short-Period Binary Pulsars in Globular Clusters”, Astrophys. J. Lett., 532, L47–L50 (2000). [External LinkDOI], [External LinkADS].
406 Rasio, F.A. et al., “Joint Discussion 6: Neutron stars and black holes in star clusters”, in van der Hucht, K.A., ed., Highlights of Astronomy, Proceedings of the IAU XXVI General Assembly, Prague, Czech Republic, 14 – 25 August 2006, Highlights of Astronomy, 14, pp. 215–243, (Cambridge University Press, Cambridge; New York, 2007). [External LinkDOI], [External LinkADS], [External LinkGoogle Books].
407 Ray, A., Kembhavi, A.K. and Antia, H.M., “Evolution of stellar binaries formed by tidal capture”, Astron. Astrophys., 184, 164–172 (1987). [External LinkADS].
408 Renzini, A. et al., “The white dwarf distance to the globular cluster NGC 6752 (and its age) with the Hubble Space Telescope”, Astrophys. J. Lett., 465, L23–L26 (1996). [External LinkDOI].
409 Richer, H.B. et al., “Hubble Space Telescope observations of white dwarfs in the globular cluster M4”, Astrophys. J. Lett., 451, L17–L20 (1995). [External LinkDOI].
410 Richer, H.B. et al., “White dwarfs in globular clusters: Hubble Space Telescope observations of M4”, Astrophys. J., 484, 741–760 (1997). [External LinkDOI].
411 Richer, H.B. et al., “Deep Advanced Camera for Surveys Imaging in the Globular Cluster NGC 6397: the Cluster Color-Magnitude Diagram and Luminosity Function”, Astron. J., 135, 2141–2154 (2008). [External LinkDOI], [External LinkarXiv:0708.4030].
412 Roh, D.-G., Lee, Y.-W., Joo, S.-J., Han, S.-I., Sohn, Y.-J. and Lee, J.-W, “Two Distinct Red Giant Branches in the Globular Cluster NGC 288”, Astrophys. J. Lett., 733, L45–L49 (2011). [External LinkDOI].
413 Rosenberg, A., Piotto, G., Saviane, I. and Aparicio, A., “Photometric catalog of nearby globular clusters. I. A large homogeneous (V,I) color-magnitude diagram data-base”, Astron. Astrophys. Suppl., 144, 5–38 (2000).
414 Sabbi, E., Ferraro, F.R., Sills, A. and Rood, R.T., “The Small Blue Straggler Star Population in the Dense Galactic Globular Cluster NGC 6752”, Astrophys. J., 617, 1296–1306 (2004). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0409001].
415 Sadowski, A., Belczynski, K., Bulik, T., Ivanova, N., Rasio, F.A. and O’Shaughnessy, R., “The Total Merger Rate of Compact Object Binaries in the Local Universe”, Astrophys. J., 676, 1162–1169 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0710.0878].
416 Salpeter, E.E., “The Luminosity Function and Stellar Evolution”, Astrophys. J., 121, 161–167 (1955). [External LinkDOI], [External LinkADS].
417 Sandquist, E.L., Taam, R.E. and Burkert, A., “On the Formation of Helium Double Degenerate Stars and Pre-Cataclysmic Variables”, Astrophys. J., 533, 984–997 (2000). [External LinkDOI], [External LinkADS].
418 Sarajedini, A. et al., “The ACS Survey of Galactic Globular Clusters. I. Overview and Clusters without Previous Hubble Space Telescope Photometry”, Astron. J., 133, 1658–1672 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0612598].
419 Schaller, G., Schaerer, D., Meynet, G. and Maeder, A., “New grids of stellar models from 0.8 to 120 M⊙ at Z = 0.020 and Z = 0.001”, Astron. Astrophys. Suppl., 96, 269–331 (1992).
420 Schneider, J., Amaro-Seoane, P. and Spurzem, R., “Higher-order moment models of dense stellar systems: applications to the modelling of the stellar velocity distribution function”, Mon. Not. R. Astron. Soc., 410, 432–454 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1006.1365 [astro-ph.GA]].
421 Schneider, R., Ferrari, V., Matarrese, S. and Portegies Zwart, S.F., “Low-frequency gravitational waves from cosmological compact binaries”, Mon. Not. R. Astron. Soc., 324, 797–810 (2001). [External LinkDOI], [External Linkastro-ph/0002055].
422 Servillat, M., Webb, N.A. and Barret, D., “XMM-Newton observations of the Galactic globular clusters NGC 2808 and NGC 4372”, Astron. Astrophys., 480, 397–407 (2008). [External Link0712.0690].
423 Servillat, M., Webb, N.A., Lewis, F., Knigge, C., van den Berg, M., Dieball, A. and Grindlay, J., “A Dwarf Nova in the Globular Cluster M13”, Astrophys. J., 733, 106 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1103.4638 [astro-ph.SR]].
424 Shara, M.M., Bergeron, L.E., Gilliland, R.L., Saha, A. and Petro, L., “Cataclysmic and close binaries in star clusters. IV. The unexpectedly low number of erupting dwarf novae detected by the Hubble Space Telescope in the core of 47 Tuc”, Astrophys. J., 471, 804–815 (1996). [External LinkDOI].
425 Shara, M.M., Bergeron, L.E. and Moffat, A.F.J., “Cataclysmic binaries in star clusters. I. A search for erupting dwarf novae in the globular cluster M92”, Astrophys. J., 429, 767–771 (1994). [External LinkDOI].
426 Shara, M.M. and Drissen, L., “Cataclysmic and close binaries in star clusters. III. Recovery of the quiescent nova 1860 A.D. (T Scorpii) in the core of the globular cluster M80”, Astrophys. J., 448, 203–206 (1995). [External LinkDOI].
427 Shara, M.M., Drissen, L., Bergeron, L.E. and Paresce, F., “Cataclysmic amd close binaries in star clusters. II. Probing the core of NGC 6752 with Hubble Space Telescope”, Astrophys. J., 441, 617–628 (1995). [External LinkDOI].
428 Shara, M.M., Hinkley, S., Zurek, D.R., Knigge, C. and Bond, H.E., “The luminous erupting dwarf nova CV 1 in the dense globular cluster M15”, Astron. J., 128, 2847–2853 (2004). [External LinkDOI].
429 Shara, M.M. and Hurley, J.R., “Star clusters as type Ia supernova factories”, Astrophys. J., 571, 830–842 (2002). [External LinkDOI].
430 Shara, M.M. and Hurley, J.R., “Dynamical Effects Dominate the Evolution of Cataclysmic Variables in Dense Star Clusters”, Astrophys. J., 646, 464–473 (2006). [External LinkDOI], [External LinkADS].
431 Shara, M.M., Zurek, D.R. and Rich, R.M., “The discovery of an erupting dwarf nova in NGC 6624”, Astrophys. J. Lett., 473, L35–L36 (1996). [External LinkDOI].
432 Shih, I.C., Kundu, A., Maccarone, T.J., Zepf, S.E. and Joseph, T.D., “A Variable Black Hole X-ray Source in an NGC 1399 Globular Cluster”, Astrophys. J., 721, 323–328 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1007.4768 [astro-ph.HE]].
433 Shull, J.M., “Dynamical effects on binary X-ray sources in dense stellar clusters”, Astrophys. J., 231, 534–538 (1979). [External LinkDOI], [External LinkADS].
434 Sidoli, L., Parmar, A.N., Oosterbroek, T., Stella, L., Verbunt, F., Masetti, N. and Dal Fiume, D., “BeppoSAX study of the broad-band properties of luminous globular cluster X-ray sources”, Astron. Astrophys., 368, 451–463 (2001). [External LinkDOI].
435 Sigurdsson, S. and Hernquist, L., “A novel mechanism for creating double pulsars”, Astrophys. J., 401, L93–L96 (1992). [External LinkDOI], [External LinkADS].
436 Sigurdsson, S. and Hernquist, L., “Primordial black holes in globular clusters”, Nature, 364, 423–425 (1993). [External LinkDOI].
437 Sigurdsson, S. and Phinney, E.S., “Binary–Single Star Interactions in Globular Clusters”, Astrophys. J., 415, 631 (1993). [External LinkDOI], [External LinkADS].
438 Sigurdsson, S. and Phinney, E.S., “Dynamics and interactions of binaries and neutron stars in globular clusters”, Astrophys. J. Suppl. Ser., 99, 609–635 (1995). [External LinkDOI].
439 Sills, A. et al., “MODEST-2: A summary”, New Astronomy, 8, 605–628 (2003). [External LinkDOI], [External Linkastro-ph/0301478].
440 Sivakoff, G.R. et al., “The Low-Mass X-Ray Binary and Globular Cluster Connection in Virgo Cluster Early-Type Galaxies: Optical Properties”, Astrophys. J., 660, 1246–1263 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0611237].
441 Sollima, A., Lanzoni, B., Beccari, G., Ferraro, F.R. and Fusi Pecci, F., “The correlation between blue straggler and binary fractions in the core of Galactic globular clusters”, Astron. Astrophys., 481, 701–704 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0801.4511].
442 Spitzer Jr, L., “Equipartition and the Formation of Compact Nuclei in Spherical Stellar Systems”, Astrophys. J., 158, L139–L143 (1969). [External LinkDOI], [External LinkADS].
443 Spitzer Jr, L., Dynamical Evolution of Globular Clusters, (Princeton University Press, Princeton, 1987).
444 Spurzem, R., “Direct N-body simulations”, J. Comput. Appl. Math., 109, 407–432 (1999). [External LinkDOI].
445 Spurzem, R. and Giersz, M., “A stochastic Monte Carlo approach to modelling of real star cluster evolution – I. The model”, Mon. Not. R. Astron. Soc., 283, 805–810 (1996). [External LinkDOI], [External LinkADS].
446 Spurzem, R. et al., “Astrophysical particle simulations with large custom GPU clusters on three continents”, Comput. Sci. Res. Dev., 26, 145–151 (2011). [External LinkDOI].
447 Stella, L., Priedhorsky, W. and White, N.E., “The discovery of a 685 second orbital period from the X-ray source 4U 1820-30 in the globular cluster NGC 6624”, Astrophys. J. Lett., 312, L17–L21 (1987). [External LinkDOI].
448 Stiele, H., Pietsch, W., Haberl, F., Hatzidimitriou, D., Barnard, R., Williams, B.F., Kong, A.K.H. and Kolb, U., “The deep XMM-Newton Survey of M 31”, Astron. Astrophys., 534, A55 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1106.4755 [astro-ph.HE]].
449 StodóƂkiewicz, J.S., “Dynamical Evolution of Globular Clusters. I”, Acta Astron., 32, 63–91 (1982). [External LinkADS].
450 StodóƂkiewicz, J.S., “Dynamical Evolution of Globular Clusters. II. Binaries – Method”, Acta Astron., 36, 19–41 (1986). [External LinkADS].
451 Strader, J., Chomiuk, L., Maccarone, T.J., Miller-Jones, J.C.A. and Seth, A.C., “Two stellar-mass black holes in the globular cluster M22”, Nature, 490, 71–73 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1210.0901 [astro-ph.HE]].
452 Strader, J., Chomiuk, L., Maccarone, T.J., Miller-Jones, J.C.A., Seth, A.C., Heinke, C.O. and Sivakoff, G.R., “No Evidence for Intermediate-mass Black Holes in Globular Clusters: Strong Constraints from the JVLA”, Astrophys. J. Lett., 750, L27 (2012). [External LinkDOI], [External LinkADS], [External LinkarXiv:1203.6352 [astro-ph.HE]].
453 Strickler, R.R., Cool, A.M., Anderson, J., Cohn, H.N. and Lugger, P.M., “Two White Dwarf Populations in the Globular Cluster NGC 6397”, 210th AAS Meeting, Honolulu, Hawaii, 27 – 31 May 2007, conference paper, (2007). Presentation Number: 016.06.
454 Strickler, R.R., Cool, A.M., Anderson, J., Cohn, H.N., Lugger, P.M. and Serenelli, A.M., “Helium-core White Dwarfs in the Globular Cluster NGC 6397”, Astrophys. J., 699, 40–55 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0904.3496 [astro-ph.GA]].
455 Sutantyo, W., “The formation of globular cluster X-ray sources through neutron star-giant collisions”, Astron. Astrophys., 44, 227–230 (1975). [External LinkADS].
456 Suzuki, T.K., Nakasato, N., Baumgardt, H., Ibukiyama, A., Makino, J. and Ebisuzaki, T., “Evolution of Collisionally Merged Massive Stars”, Astrophys. J., 668, 435–448 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0703290].
457 Takahashi, K. and Portegies Zwart, S.F., “The Disruption of Globular Star Clusters in the Galaxy: A Comparative Analysis between Fokker-Planck and N-Body Models”, Astrophys. J., 503, L49–L52 (1998). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/9805310].
458 Takahashi, K. and Portegies Zwart, S.F., “The evolution of globular clusters in the galaxy”, Astrophys. J., 535, 759–775 (2000). [External LinkDOI].
459 Taylor, J.M., Grindlay, J.E. and Edmonds, P.D., “Helium white dwarfs and BY Draconis binaries in the globular cluster NGC 6397”, Astrophys. J. Lett., 553, L169–L172 (2001). [External LinkDOI].
460 “The Grape Project”, project homepage, University of Tokyo. URL (accessed 11 August 2001):
External Linkhttp://astrogrape.org.
461 Thorne, K.S. and Zytkow, A.N., “Stars with degenerate neutron cores. I. Structure of equilibrium models”, Astrophys. J., 212, 832–858 (1977). [External LinkDOI], [External LinkADS].
462 Tout, C.A., Aarseth, S.J., Pols, O.R. and Eggleton, P.P., “Rapid binary star evolution for N-body simulations and population synthesis”, Mon. Not. R. Astron. Soc., 291, 732–748 (1997). [External LinkADS].
463 Trenti, M., Heggie, D.C. and Hut, P., “Star clusters with primordial binaries – II. Dynamical evolution of models in a tidal field”, Mon. Not. R. Astron. Soc., 374, 344–356 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0602409].
464 Trenti, M., Ransom, S., Hut, P. and Heggie, D.C., “Predictions for triple stars with and without a pulsar in star clusters”, Mon. Not. R. Astron. Soc., 387, 815–824 (2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0705.4223].
465 Ulvestad, J.S., Greene, J.E. and Ho, L.C., “Radio Emission from the Intermediate-Mass Black Hole in the Globular Cluster G1”, Astrophys. J. Lett., 661, L151–L154 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:0704.1458].
466 van den Bosch, R., de Zeeuw, T., Gebhardt, K., Noyola, E. and van de Ven, G., “The Dynamical Mass-to-Light Ratio Profile and Distance of the Globular Cluster M15”, Astrophys. J., 641, 852–861 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0512503].
467 van der Marel, R.P. and Anderson, J., “New Limits on an Intermediate-Mass Black Hole in Omega Centauri. II. Dynamical Models”, Astrophys. J., 710, 1063–1088 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:0905.0638 [astro-ph.GA]].
468 Vanbeveren, D., Belkus, H., van Bever, J. and Mennekens, N., “Stellar dynamics in young clusters: the formation of massive runaways and very massive runaway mergers”, Astrophys. Space Sci., 324, 271–276 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0712.3343].
469 Verbunt, F., “The formation of ultra-short period binaries in globular clusters”, Astrophys. J., 312, L23–L25 (1987). [External LinkDOI], [External LinkADS].
470 Verbunt, F., “A census with ROSAT of low-luminosity X-ray sources in globular clusters”, Astron. Astrophys., 368, 137–159 (2001). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0012261].
471 Verbunt, F. and Lewin, W.H.G., “Globular cluster X-ray sources”, in Lewin, W.H.G. and van der Klis, M., eds., Compact Stellar X-Ray Sources, Cambridge Astrophysics Series, 39, pp. 341–379, (Cambridge University Press, Cambridge, 2006). [External Linkastro-ph/0404136], [External LinkGoogle Books].
472 Verbunt, F. and Meylan, G., “Mass segregation and formation of X-ray sources in globular clusters”, Astron. Astrophys., 203, 297–305 (1988). [External LinkADS].
473 Verbunt, F., van Kerkwijk, M.H., in ’t Zand, J.J.M. and Heise, J., “X-ray and optical follow-up observations of the August 1998 X-ray transient in NGC 6440”, Astron. Astrophys., 359, 960–966 (2000).
474 Verbunt, F. and Zwaan, C., “Magnetic braking in low-mass X-ray binaries”, Astron. Astrophys., 100, L7–L9 (1981). [External LinkADS].
475 Vesperini, E. and Heggie, D.C., “On the effects of dynamical evolution on the initial mass function of globular clusters”, Mon. Not. R. Astron. Soc., 289, 898–920 (1997). [External LinkDOI].
476 “Virgo”, project homepage, European Gravitational Observatory. URL (accessed 8 October 2011):
External Linkhttps://wwwcascina.virgo.infn.it/.
477 Voss, R. et al., “Luminosity Functions of LMXBs in Centaurus a: Globular Clusters Versus the Field”, Astrophys. J., 701, 471–480 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0906.5364 [astro-ph.HE]].
478 Warren, S.R., Sandquist, E.L. and Bolte, M., “The Blue Straggler Population of the Globular Cluster M5: Comparison with M3”, Astrophys. J., 648, 1026–1036 (2006). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0605047].
479 Watters, W.A., Joshi, K.J. and Rasio, F.A., “Thermal and Dynamical Equilibrium in Two-Component Star Clusters”, Astrophys. J., 539, 331–341 (2000). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/9912457].
480 Webb, N.A. and Barret, D., “Faint X-ray sources in globular clusters in the XMM-Newton and Chandra era”, in Hameury, J.-M. and Lasota, J.-P, eds., The Astrophysics of Cataclysmic Variables and Related Objects, Proceedings of a meeting held in Strasbourg, France, 11 – 16 July 2004, ASP Conference Series, 330, pp. 41–54, (Astronomical Society of the Pacific, San Francisco, 2005). [External Linkastro-ph/0411506].
481 Webbink, R.F., “The evolution of low-mass close binary systems. I. The evolutionary fate of contact binaries”, Astrophys. J., 209, 829–845 (1976). [External LinkDOI], [External LinkADS].
482 Webbink, R.F., “Double white dwarfs as progenitors of R Coronae Borealis stars and Type I supernovae”, Astrophys. J., 277, 355–360 (1984). [External LinkDOI], [External LinkADS].
483 Webbink, R.F., “Common Envelope Evolution Redux”, in Milone, E.F., Leahy, D.A. and Hobill, D.W., eds., Short-Period Binary Stars: Observations, Analyses, and Results, Astrophysics and Space Science Library, 352, pp. 233–257, (Springer, Berlin; New York, 2008). [External LinkDOI], [External LinkADS], [External LinkarXiv:0704.0280], [External LinkGoogle Books].
484 Weidner, C., Kroupa, P., Nürnberger, D.E.A. and Sterzik, M.F., “On the infant weight loss of low- to intermediate-mass star clusters”, Mon. Not. R. Astron. Soc., 376, 1879–1885 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0702001].
485 White, N.E. and Angelini, L., “The discovery of a second luminous low-mass X-ray binary in the globular cluster M15”, Astrophys. J. Lett., 561, L101–L105 (2001). [External LinkDOI].
486 Wijnands, R., Heinke, C.O., Pooley, D., Edmonds, P.D., Lewin, W.H.G., Grindlay, J.E., Jonker, P.G. and Miller, J.M., “The hard quiescent spectrum of the neutron star X-ray transient EXO 1745-248 in the globular cluster Terzan 5”, Astrophys. J., 618, 883–890 (2005). [External LinkDOI].
487 Willems, B., Kalogera, V., Vecchio, A., Ivanova, N., Rasio, F.A., Fregeau, J.M. and Belczynski, K., “Eccentric Double White Dwarfs as LISA Sources in Globular Clusters”, Astrophys. J. Lett., 665, L59–L62 (2007). [External LinkDOI], [External Link0705.4287].
488 Zaggia, S.R., Piotto, G. and Capaccioli, M., “The stellar distribution of the globular cluster M 55”, Astron. Astrophys., 327, 1004–1016 (1997). [External LinkADS], [External LinkarXiv:astro-ph/9707142].
489 Zahn, J.-P., “Tidal evolution of close binary stars. I. Revisiting the theory of the equilibrium tide”, Astron. Astrophys., 220, 112–116 (1989).
490 Zahn, J.-P. and Bouchet, L., “Tidal evolution of close binary stars. II. Orbital circularization of late-type binaries”, Astron. Astrophys., 223, 112–118 (1989).
491 Zdziarski, A.A., Wen, L. and GierliƄski, M., “The superorbital variability and triple nature of the X-ray source 4U 1820-303”, Mon. Not. R. Astron. Soc., 377, 1006–1016 (2007). [External LinkDOI], [External LinkADS], [External LinkarXiv:astro-ph/0701470].
492 Zhang, Z. et al., “Luminosity functions of LMXBs in different stellar environments”, Astron. Astrophys., 533, A33 (2011). [External LinkDOI], [External LinkADS], [External LinkarXiv:1103.4486 [astro-ph.HE]].
493 Zheng, X.-Z., “Do Globular Clusters Harbor Black Holes?”, Chin. J. Astron. Astrophys., 1, 291 (2001). [External LinkDOI], [External LinkarXiv:astro-ph/0106410].
494 Zorotovic, M., Schreiber, M.R., Gänsicke, B.T. and Nebot Gómez-Morán, A., “Post-common-envelope binaries from SDSS. IX: Constraining the common-envelope efficiency”, Astron. Astrophys., 520, A86 (2010). [External LinkDOI], [External LinkADS], [External LinkarXiv:1006.1621 [astro-ph.SR]].
495 Zurek, D.R., Knigge, C., Maccarone, T.J., Dieball, A. and Long, K.S., “An Ultracompact X-Ray Binary in the Globular Cluster NGC 1851”, Astrophys. J., 699, 1113–1118 (2009). [External LinkDOI], [External LinkADS], [External LinkarXiv:0905.0145 [astro-ph.HE]].