1932

Abstract

Most galactic nuclei harbor a massive black hole (MBH), whose birth and evolution are closely linked to those of its host galaxy. The unique conditions near the MBH—high velocity and density in the steep potential of a massive singular relativistic object—lead to unusual modes of stellar birth, evolution, dynamics, and death. A complex network of dynamical mechanisms, operating on multiple timescales, deflects stars to orbits that intercept the MBH. Such close encounters lead to energetic interactions with observable signatures and consequences for the evolution of the MBH and its stellar environment. Galactic nuclei are astrophysical laboratories that test and challenge our understanding of MBH formation, strong gravity, stellar dynamics, and stellar physics. I review from a theoretical perspective the wide range of stellar phenomena that occur near MBHs, focusing on the role of stellar dynamics near an isolated MBH in a relaxed stellar cusp.

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2017-08-18
2024-04-24
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Literature Cited

  1. Alexander T. 1999. Ap. J. 527:835–50
  2. Alexander T. 2001. Ap. J. Lett. 553:L149–52
  3. Alexander T. 2005. Phys. Rep. 419:65–142
  4. Alexander T. 2010. Astro-GR@Paris 2010: Gravitational-Wave and Electromagnetic Signatures of Massive Black Hole Binaries and Extreme Mass-Ratio Inspirals, APC, Paris, Sept. 13–17 http://astro-gr.org/astro-gr-2010-gw-em-signatures-massive-black-hole-binaries-emris/
  5. Alexander T. 2011. The Galactic Center: a Window to the Nuclear Environment of Disk Galaxies MR Morris, QD Wang, F Yuan ASP Conf. Ser. 439129 San Francisco: ASP
  6. Alexander T. 2012. Tidal Disruption and AGN Outburst Eur. Phys. J. Web Conf. 39:05001
  7. Alexander T. 2015. Proc. 50th Recontres Moriond Gravit.: 100 Years After GR, La Thuile, Italy, March 21–28 arXiv:1505.04823
  8. Alexander T, Hopman C. 2003. Ap. J. Lett. 590:L29–32
  9. Alexander T, Hopman C. 2009. Ap. J. 697:1861–69
  10. Alexander T, Kumar P. 2001. Ap. J. 549:948–58
  11. Alexander T, Livio M. 2001. Ap. J. Lett. 560:L143–46
  12. Alexander T, Livio M. 2004. Ap. J. Lett. 606:L21–24
  13. Alexander T, Loeb A. 2001. Ap. J. 551:223–30
  14. Alexander T, Morris M. 2003. Ap. J. Lett. 590:L25–28
  15. Alexander T, Natarajan P. 2014. Science 345:1330–33
  16. Alexander T, Pfuhl O. 2014. Ap. J. 780:148
  17. Alexander T, Sternberg A. 1999. Ap. J. 520:137–48
  18. Amaro-Seoane P, Chen X. 2014. Ap. J. Lett. 781:L18
  19. Amaro-Seoane P, Gair JR, Freitag M. et al. 2007. Class. Quantum Gravity 24:113
  20. Antonini F. 2014. Ap. J. 794:106
  21. Antonini F, Faber J, Gualandris A, Merritt D. 2010. Ap. J. 713:90–104
  22. Antonini F, Lombardi JC Jr., Merritt D. 2011. Ap. J. 731:128
  23. Antonini F, Merritt D. 2013. Ap. J. Lett. 763:L10
  24. Arcavi I, Gal-Yam A, Sullivan M. et al. 2014. Ap. J. 793:38
  25. Artymowicz P, Lin DNC, Wampler EJ. 1993. Ap. J. 409:592–603
  26. Bahcall JN, Wolf RA. 1977. Ap. J. 216:883–907
  27. Bailey VC, Davies MB. 1999. MNRAS 308:257–70
  28. Bar-Or B, Alexander T. 2014. Class. Quantum Gravity 31:244003
  29. Bar-Or B, Alexander T. 2016. Ap. J. 820:129
  30. Bar-Or B, Kupi G, Alexander T. 2013. Ap. J. 764:52
  31. Barack L. 2009. Class. Quantum Gravity 26:213001
  32. Barack L, Cutler C. 2004. Phys. Rev. D 69:082005
  33. Bardeen JM, Petterson JA. 1975. Ap. J. Lett. 195:L65
  34. Bartko H, Martins F, Fritz TK. et al. 2009. Ap. J. 697:1741–63
  35. Bartko H, Martins F, Trippe S. et al. 2010. Ap. J. 708:834–40
  36. Begelman MC, Blandford RD, Rees MJ. 1980. Nature 287:307–9
  37. Bellm E. 2014. Proc. 3rd Hot-Wiring Transient Universe Workshop PR Wozniak, MJ Graham, AA Mahabal, R Seaman 27–33 Los Alamos, NM: Los Alamos Natl. Lab.
  38. Binney J, Tremaine S. 2008. Galactic Dynamics Princeton, NJ: Princeton Univ. Press, 2nd ed..
  39. Boehle A, Ghez AM, Schödel R. et al. 2016. Ap. J. 830:17
  40. Bonnerot C, Rossi EM, Lodato G. 2016. MNRAS 458:3324–30
  41. Bonnerot C, Rossi EM, Lodato G, Price DJ. 2016. MNRAS 455:2253–66
  42. Bregman M, Alexander T. 2009. Ap. J. Lett. 700:L192–95
  43. Bregman M, Alexander T. 2012. Ap. J. 748:63
  44. Brem P, Amaro-Seoane P, Sopuerta CF. 2014. MNRAS 437:1259–67
  45. Brown WR. 2015. Annu. Rev. Astron. Astrophys. 53:15–49
  46. Brown WR, Geller MJ, Kenyon SJ, Kurtz MJ. 2005. Ap. J. Lett. 622:L33–36
  47. Buchholz RM, Schödel R, Eckart A. 2009. Astron. Astrophys. 499:483–501
  48. Callen HB, Welton TA. 1951. Phys. Rev. 83:34–40
  49. Carr JS, Sellgren K, Balachandran SC. 2000. Ap. J. 530:307–22
  50. Carter B, Luminet JP. 1982. Nature 296:211–14
  51. Chatterjee P, Hernquist L, Loeb A. 2002. Phys. Rev. Lett. 88:121103
  52. Chen X, Sesana A, Madau P, Liu FK. 2011. Ap. J. 729:13
  53. Dai L, Escala A, Coppi P. 2013. Ap. J. Lett. 775:L9
  54. Dai L, McKinney JC, Miller MC. 2015. Ap. J. Lett. 812:L39
  55. Dale JE, Davies MB, Church RP, Freitag M. 2009. MNRAS 393:1016–33
  56. Davies MB, Miller MC, Bellovary JM. 2011. Ap. J. Lett. 740:L42
  57. Dearborn DSP, Wilson JR, Mathews GJ. 2005. Ap. J. 630:309–20
  58. Deegan P, Nayakshin S. 2007. MNRAS 377:897–904
  59. Devecchi B, Volonteri M. 2009. Ap. J. 694:302–13
  60. Do T, Ghez AM, Morris MR. et al. 2009. Ap. J. 703:1323–37
  61. Eatough R, Lazio TJW, Casanellas J. et al. 2015. Adv. Astrophys. Sq. Kilometre Array, Giardini Naxos, Italy, Jun. 8–13. Proc. Sci. (AASKA14):045
  62. Eilon E, Kupi G, Alexander T. 2009. Ap. J. 698:641–47
  63. Eisenhauer F, Perrin G, Brandner W. et al. 2011. Messenger 143:16–24
  64. eLISA Consortium. 2016. The gravitational universe arXiv:1305.5720
  65. Ferrarese L, Merritt D. 2000. Ap. J. Lett. 539:L9–12
  66. Fouvry JB, Pichon C, Magorrian J. 2016. Astron. Astrophys. In press. arXiv 1606.05501
  67. Fragione G, Loeb A. 2017. New Astron 55:32–38
  68. Frank J, Rees MJ. 1976. MNRAS 176:633–47
  69. Freitag M. 2003. Ap. J. Lett. 583:L21–24
  70. Freitag M, Benz W. 2002. Astron. Astrophys. 394:345–74
  71. Freitag M, Benz W. 2005. MNRAS 358:1133–58
  72. French KD, Arcavi I, Zabludoff A. 2016. Ap. J. Lett. 818:L21
  73. Fritz TK, Chatzopoulos S, Gerhard O. et al. 2016. Ap. J. 821:44
  74. Gebhardt K, Bender R, Bower G. et al. 2000. Ap. J. Lett. 539:L13–L16
  75. Genzel R, Eisenhauer F, Gillessen S. 2010. Rev. Mod. Phys. 82:3121–95
  76. Genzel R, Pichon C, Eckart A, Gerhard OE, Ott T. 2000. MNRAS 317:348–74
  77. Georgiev IY, Böker T, Leigh N, Lützgendorf N, Neumayer N. 2016. MNRAS 457:2122–38
  78. Gerhard OE, Binney J. 1985. MNRAS 216:467–502
  79. Ghez AM, Duchêne G, Matthews K. et al. 2003. Ap. J. Lett. 586:L127–31
  80. Gillessen S, Eisenhauer F, Trippe S. et al. 2009. Ap. J. 692:1075–109
  81. Gillessen S, Genzel R, Fritz TK. et al. 2012. Nature 481:51–54
  82. Gillessen S, Plewa P, Eisenhauer F. et al. 2016. Ap. J. 837(1)30
  83. Ginsburg I, Loeb A. 2007. MNRAS 376:492–96
  84. Goodman J. 1983. Ap. J. 270:700
  85. Goodman J, Tan JC. 2004. Ap. J. 608:108–18
  86. Gould A, Quillen AC. 2003. Ap. J. 592:935–40
  87. Graham AW. 2016. Galactic Bulges E Laurikainen, R Peletier, D Gadotti Astrophys. Space Sci. Libr 418263–313 Cham, Switz.: Springer Int. Publ.
  88. Guillochon J, Loeb A, MacLeod M, Ramirez-Ruiz E. 2014. Ap. J. Lett. 786:L12
  89. Guillochon J, Ramirez-Ruiz E. 2013. Ap. J. 767:25
  90. Guillochon J, Ramirez-Ruiz E. 2015. Ap. J. 809:166
  91. Gürkan MA, Hopman C. 2007. MNRAS 379:1083–88
  92. Häring N, Rix HW. 2004. Ap. J. Lett. 604:L89–92
  93. Hayasaki K, Stone N, Loeb A. 2016. MNRAS 461:3760–80
  94. Heggie D, Hut P. 2003. The Gravitational Million-Body Problem: A Multidisciplinary Approach to Star Cluster Dynamics Cambridge, UK: Cambridge Univ. Press 372
  95. Heggie DC, Hut P, McMillan SLW. 1996. Ap. J. 467:359
  96. Hills JG. 1988. Nature 331:687–89
  97. Hopman C. 2009a. Ap. J. 700:1933–51
  98. Hopman C. 2009b. Class. Quantum Gravity 26:094028
  99. Hopman C, Alexander T. 2005. Ap. J. 629:362–72
  100. Hopman C, Alexander T. 2006. Ap. J. 645:1152–63
  101. Kaiser N, Aussel H, Burke BE. et al. 2002. Survey and Other Telescope Technologies and Discoveries,ed. JA Tyson, S Wolff Proc. SPIE Conf. Ser. 4836154 Bellingham, WA: SPIE [Google Scholar]
  102. Kauffmann G, Heckman TM, Tremonti C. et al. 2003. MNRAS 346:1055–77
  103. Kennea JA, Burrows DN, Kouveliotou C. et al. 2013. Ap. J. Lett. 770:L24
  104. Kenyon SJ, Bromley BC, Geller MJ, Brown WR. 2008. Ap. J. 680:312–27
  105. Keshet U, Hopman C, Alexander T. 2009. Ap. J. Lett. 698:L64–67
  106. Kieffer TF, Bogdanović T. 2016. Ap. J. 823:155
  107. King A, Pounds K. 2015. Annu. Rev. Astron. Astrophys. 53:115–54
  108. Kobayashi S, Hainick Y, Sari R, Rossi EM. 2012. Ap. J. 748:105
  109. Kocsis B, Tremaine S. 2015. MNRAS 448:3265–96
  110. Komossa S. 2015. J. High Energy Astrophys. 7:148–57
  111. Kormendy J, Bender R. 2009. Ap. J. Lett. 691:L142–46
  112. Kormendy J, Ho LC. 2013. Annu. Rev. Astron. Astrophys. 51:511–653
  113. Kuo CY, Braatz JA, Condon JJ. et al. 2011. Ap. J. 727:20
  114. Laguna P, Miller WA, Zurek WH, Davies MB. 1993. Ap. J. Lett. 410:L83–86
  115. Lai D, Rasio FA, Shapiro SL. 1993. Ap. J. 412:593–611
  116. Lasota JP, Alexander T, Dubus G. et al. 2011. Ap. J. 735:89
  117. Lauer TR, Faber SM, Ajhar EA, Grillmair CJ, Scowen PA. 1998. Astron. J. 116:2263–86
  118. Law NM, Kulkarni SR, Dekany RG. et al. 2009. Publ. Astron. Soc. Pac. 121:1395–408
  119. Levin Y. 2007. MNRAS 374:515–24
  120. Levin Y, Beloborodov AM. 2003. Ap. J. Lett. 590:L33–36
  121. Li YR, Ho LC, Wang JM. 2011. Ap. J. 742:33
  122. Lightman AP, Shapiro SL. 1977. Ap. J. 211:244–62
  123. Livne E, Tuchman Y. 1988. Ap. J. 332:271–81
  124. Lodato G, King AR, Pringle JE. 2009. MNRAS 392:332–40
  125. Lodato G, Pringle JE. 2006. MNRAS 368:1196–208
  126. Lu JR, Do T, Ghez AM. et al. 2013. Ap. J. 764:155
  127. Lu JR, Ghez AM, Hornstein SD. et al. 2009. Ap. J. 690:1463–87
  128. Luminet JP, Pichon B. 1989. Astron. Astrophys. 209:103–10
  129. MacLeod M, Guillochon J, Ramirez-Ruiz E. 2012. Ap. J. 757:134
  130. Madigan AM, Hopman C, Levin Y. 2011. Ap. J. 738:99
  131. Madigan AM, Pfuhl O, Levin Y. et al. 2014. Ap. J. 784:23
  132. Maeda Y, Baganoff FK, Feigelson ED. et al. 2002. Ap. J. 570:671–87
  133. Magorrian J, Tremaine S. 1999. MNRAS 309:447–60
  134. Magorrian J, Tremaine S, Richstone D. et al. 1998. Astron. J. 115:2285–305
  135. Maness H, Martins F, Trippe S. et al. 2007. Ap. J. 669:1024–41
  136. Manukian H, Guillochon J, Ramirez-Ruiz E, O'Leary RM. 2013. Ap. J. Lett. 771:L28
  137. McConnell NJ, Ma CP, Gebhardt K. et al. 2011. Nature 480:215–18
  138. McKernan B, Ford KES, Lyra W. et al. 2011. MNRAS 417:L103–7
  139. Merritt D. 2010. Ap. J. 718:739–61
  140. Merritt D. 2013. Dynamics and Evolution of Galactic Nuclei. Princeton, NJ: Princeton Univ. Press
  141. Merritt D, Alexander T, Mikkola S, Will CM. 2010. Phys. Rev. D 81:062002
  142. Merritt D, Alexander T, Mikkola S, Will CM. 2011. Phys. Rev. D 84:044024
  143. Merritt D, Berczik P, Laun F. 2007. Astron. J. 133:553–63
  144. Merritt D, Milosavljević M. 2005. Living Rev. Relativ. 8:8
  145. Mikkola S, Merritt D. 2006. MNRAS 372:219–23
  146. Miller MC, Colbert EJM. 2004. Int. J. Mod. Phys. D 13:1–64
  147. Miller MC, Freitag M, Hamilton DP, Lauburg VM. 2005. Ap. J. Lett. 631:L117–20
  148. Milosavljević M, Loeb A. 2004. Ap. J. Lett. 604:L45–48
  149. Milosavljević M, Merritt D. 2001. Ap. J. 563:34–62
  150. Milosavljević M, Merritt D, Rest A, van den Bosch FC. 2002. MNRAS 331:L51–55
  151. Miralda-Escudé J, Kollmeier JA. 2005. Ap. J. 619:30–40
  152. Miyoshi M, Moran J, Herrnstein J. et al. 1995. Nature 373:127–29
  153. Mo H, van den Bosch F, White S. 2010. Galaxy Formation and Evolution. Cambridge, UK: Cambridge Univ. Press
  154. Morris M. 1993. Ap. J. 408:496–506
  155. Mortlock DJ, Warren SJ, Venemans BP. et al. 2011. Nature 474:616–19
  156. Muno MP, Pfahl E, Baganoff FK. et al. 2005. Ap. J. Lett. 622:L113–16
  157. Murphy BW, Cohn HN, Durisen RH. 1991. Ap. J. 370:60–77
  158. Naoz S. 2016. Annu. Rev. Astron. Astrophys. 54:441–89
  159. Narayan R. 2000. Ap. J. 536:663–67
  160. Nayakshin S, Sunyaev R. 2005. MNRAS 364:L23–27
  161. Netzer H. 2015. Annu. Rev. Astron. Astrophys. 53:365–408
  162. Novikov ID, Pethick CJ, Polnarev AG. 1992. MNRAS 255:276–84
  163. Nusser A, Broadhurst T. 2004. MNRAS 355:L6–8
  164. Omukai K, Schneider R, Haiman Z. 2008. Ap. J. 686:801–14
  165. Ostriker JP. 1983. Ap. J. 273:99–104
  166. Perets HB. 2009. Ap. J. 698:1330–40
  167. Perets HB, Gualandris A, Kupi G, Merritt D, Alexander T. 2009a. Ap. J. 702:884–89
  168. Perets HB, Hopman C, Alexander T. 2007. Ap. J. 656:709–20
  169. Perets HB, Wu X, Zhao HS. et al. 2009b. Ap. J. 697:2096–101
  170. Pfuhl O, Alexander T, Gillessen S. et al. 2014. Ap. J. 782:101
  171. Phifer K, Do T, Meyer L. et al. 2013. Ap. J. Lett. 773:L13
  172. Press WH, Teukolsky SA. 1977. Ap. J. 213:183–92
  173. Preto M, Amaro-Seoane P. 2010. Ap. J. Lett. 708:L42–46
  174. Prodan S, Antonini F, Perets HB. 2015. Ap. J. 799:118
  175. Psaltis D, Wex N, Kramer M. 2016. Ap. J. 818:121
  176. Rauch KP. 1999. Ap. J. 514:725–45
  177. Rauch KP, Tremaine S. 1996. New Astron. 1:149–70
  178. Rees MJ. 1988. Nature 333:523–28
  179. Rossi EM, Kobayashi S, Sari R. 2014. Ap. J. 795:125
  180. Rossi EM, Marchetti T, Cacciato M, Kuiack M, Sari R. 2016. MNRAS 467(2):1844–56
  181. Rosswog S, Ramirez-Ruiz E, Hix WR. 2009. Ap. J. 695:404–19
  182. Rozyczka M, Bodenheimer P, Lin DNC. 1995. MNRAS 276:597–606
  183. Sari R, Kobayashi S, Rossi EM. 2010. Ap. J. 708:605–14
  184. Sazonov S, Sunyaev R, Revnivtsev M. 2012. MNRAS 420:388–404
  185. Schaller G, Schaerer D, Meynet G, Maeder A. 1992. Astron. Astrophys. Suppl. 96:269–331
  186. Schödel R, Eckart A, Alexander T. et al. 2007. Astron. Astrophys. 469:125–46
  187. Schödel R, Gallego Cano E, Dong H. et al. 2016. Presented at 11th LISA Symp., Zurich, Switz.
  188. Sesana A, Haardt F, Madau P. 2007. MNRAS 379:L45–49
  189. Shapiro SL, Marchant AB. 1978. Ap. J. 225:603–24
  190. Shappee BJ, Prieto JL, Grupe D. et al. 2014. Ap. J. 788:48
  191. Soltan A. 1982. MNRAS 200:115–22
  192. Spitzer LJ. 1969. Ap. J. Lett. 158:L139–42
  193. Spitzer LJ, Schwarzschild M. 1951. Ap. J. 114:385–97
  194. Stephan AP, Naoz S, Ghez AM. et al. 2016. MNRAS 460:3494–504
  195. Stone N, Sari R, Loeb A. 2013. MNRAS 435:1809–24
  196. Stone NC, Metzger BD. 2016. MNRAS 455:859–83
  197. Stone NC, van Velzen S. 2016. Ap. J. Lett. 825:L14
  198. Syer D, Clarke CJ, Rees MJ. 1991. MNRAS 250:505–12
  199. Syer D, Ulmer A. 1999. MNRAS 306:35–42
  200. Thomas J, Saglia RP, Bender R, Erwin P, Fabricius M. 2014. Ap. J. 782:39
  201. Thorne KS. 1987. Three Hundred Years of Gravitation SW Hawking, W Israel 330–458 Cambridge, UK: Cambridge Univ. Press
  202. Thorne KS, Zytkow AN. 1975. Ap. J. Lett. 199:L19–24
  203. Touma JR, Tremaine S, Kazandjian MV. 2009. MNRAS 394:1085–108
  204. Vasiliev E. 2014. Class. Quantum Gravity 31:244002
  205. Vasiliev E, Merritt D. 2013. Ap. J. 774:87
  206. Volonteri M. 2010. Astron. Astrophys. Rev. 18:279–315
  207. Volonteri M. 2012. Science 337:544
  208. Wang J, Merritt D. 2004. Ap. J. 600:149–61
  209. Wardle M, Yusef-Zadeh F. 1992. Ap. J. Lett. 387:L65–68
  210. Wegg C, Bode JN. 2011. Ap. J. Lett. 738:L8
  211. Will CM. 2008. Ap. J. Lett. 674:L25–28
  212. Young PJ. 1977. Ap. J. 217:287–95
  213. Yu Q, Madau P. 2007. MNRAS 379:1293–301
  214. Yu Q, Tremaine S. 2002. MNRAS 335:965–76
  215. Yu Q, Tremaine S. 2003. Ap. J. 599:1129–38
  216. Zhang F, Lu Y, Yu Q. 2010. Ap. J. 722:1744
  217. Zucker S, Alexander T, Gillessen S, Eisenhauer F, Genzel R. 2006. Ap. J. Lett. 639:L21–24
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