1932

Abstract

This review describes recent developments related to the unified model of active galactic nuclei (AGNs). It focuses on new ideas about the origin and properties of the central obscurer (torus) and the connection to its surroundings. The review does not address radio unification. AGN tori must be clumpy but uncertainties about their properties persist. Today's most promising models involve disk winds of various types and hydrodynamic simulations that link the large-scale galactic disk to the inner accretion flow. Infrared (IR) studies greatly improved our understanding of the spectral energy distribution of AGNs, but they are hindered by various selection effects. X-ray samples are more complete. The dependence of the covering factor of the torus on luminosity is a basic relationship that remains unexplained. There is also much confusion regarding real type-II AGNs, which do not fit into a simple unification scheme. The most impressive recent results are due to IR interferometry, which is not in accord with most torus models, and the accurate mapping of central ionization cones. AGN unification may not apply to merging systems and is possibly restricted to secularly evolving galaxies.

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2015-08-18
2024-04-26
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Literature Cited

  1. Aalto S, Garcia-Burillo S, Muller S. et al. 2015. Astron. Astrophys. 574:A85
  2. Alexander T, Lutz D, Sturm E. et al. 2000. Ap. J. 536:710–17
  3. Alig C, Schartmann M, Burkert A, Dolag K. 2013. Ap. J. 771:119
  4. Alonso-Herrero A, Ramos Almeida C, Mason R. et al. 2011. Ap. J. 736:82
  5. Antonucci R. 1993. Annu. Rev. Astron. Astrophys. 31:473–521
  6. Antonucci RRJ, Miller JS. 1985. Ap. J. 297:621–32
  7. Asmus D, Gandhi P, Smette A, Hönig SF, Duschl WJ. 2011. Astron. Astrophys. 536:A36
  8. Assef RJ, Stern D, Kochanek CS. et al. 2013. Ap. J. 772:26
  9. Baldwin JA, Phillips MM, Terlevich R. 1981. Publ. Astron. Soc. Pac. 93:5–19
  10. Barvainis R. 1987. Ap. J. 320:537
  11. Beckert T, Duschl WJ. 2004. Astron. Astrophys. 426:445–54
  12. Bentz MC, Denney KD, Grier CJ. et al. 2013. Ap. J. 767:149
  13. Bianchi S, Bonilla NF, Guainazzi M, Matt G, Ponti G. 2009. Astron. Astrophys. 501:915
  14. Bianchi S, Guainazzi M, Chiaberge M. 2006. Astron. Astrophys. 448:499–511
  15. Blandford RD, Netzer H, Woltjer L, Courvoisier TJL, Mayor M. 1990. Active Galactic Nuclei. Heidelberg, Ger: Springer-Verlag
  16. Bock JJ, Neugebauer G, Matthews K. et al. 2000. Astron. J. 120:2904–19
  17. Bottorff MC, Korista KT, Shlosman I. 2000. Ap. J. 537:134–51
  18. Brightman M, Nandra K. 2011a. MNRAS 413:1206–35
  19. Brightman M, Nandra K. 2011b. MNRAS 414:3084–104
  20. Brightman M, Ueda Y. 2012. MNRAS 423:702–17
  21. Brusa M, Civano F, Comastri A. et al. 2010. Ap. J. 716:348–69
  22. Buchanan CL, Gallimore JF, O'Dea CP. et al. 2006. Astron. J. 132:401–19
  23. Burlon D, Ajello M, Greiner J. et al. 2011. Ap. J. 728:58
  24. Burtscher L, Meisenheimer K, Tristram KRW. et al. 2013. Astron. Astrophys. 558:A149
  25. Caproni A, Livio M, Abraham Z, Mosquera Cuesta HJ. 2006. Ap. J. 653:112–26
  26. Chaudhary P, Brusa M, Hasinger G, Merloni A, Comastri A. 2010. Astron. Astrophys. 518:A58
  27. Cid Fernandes R, Stasińska G, Mateus A, Vale Asari N. 2011. MNRAS 413:1687–99
  28. Cisternas M, Jahnke K, Bongiorno A. et al. 2011. Ap. J. Lett. 741:L11
  29. Collin S, Zahn JP. 1999. Astron. Astrophys. 344:433–49
  30. Collin S, Zahn JP. 2008. Astron. Astrophys. 477:419–35
  31. Comastri A, Setti G, Zamorani G, Hasinger G. 1995. Astron. Astrophys. 296:1
  32. Combes F, García-Burillo S, Casasola V. et al. 2013. Astron. Astrophys. 558:A124
  33. Czerny B, Hryniewicz K. 2011. Astron. Astrophys. 525:L8
  34. Davies R, Mark D, Sternberg A. 2012. Astron. Astrophys. 537:A133
  35. Davies RI, Maciejewski W, Hicks EKS. et al. 2014. Ap. J. 792:101
  36. Davies RI, Müller-Sánchez F, Genzel R. et al. 2007. Ap. J. 671:1388–412
  37. Deo RP, Crenshaw DM, Kraemer SB. et al. 2007. Ap. J. 671:124–35
  38. Deo RP, Richards GT, Crenshaw DM, Kraemer SB. 2009. Ap. J. 705:14–31
  39. Diamond-Stanic AM, Rieke GH. 2012. Ap. J. 746:168
  40. Diamond-Stanic AM, Rieke GH, Rigby JR. 2009. Ap. J. 698:623–31
  41. Díaz-Santos T, Alonso-Herrero A, Colina L. et al. 2010. Ap. J. 711:328–49
  42. Dicken D, Tadhunter C, Morganti R. et al. 2014. Ap. J. 788:98
  43. Dopita MA, Scharwächter J, Shastri P. et al. 2014. Astron. Astrophys. 566:A41
  44. Dullemond CP, van Bemmel IM. 2005. Astron. Astrophys. 436:47–56
  45. Duschl WJ, Britsch M. 2006. Ap. J. Lett. 653:L89–92
  46. Efstathiou A, Rowan-Robinson M. 1995. MNRAS 273:649–61
  47. Elitzur M. 2012. Ap. J. Lett. 747:L33
  48. Elitzur M, Ho LC. 2009. Ap. J. Lett. 701:L91–94
  49. Elitzur M, Shlosman I. 2006. Ap. J. Lett. 648:L101–4
  50. Elvis M. 2012. J. Phys. Conf. Ser. 372:012032
  51. Emmering RT, Blandford RD, Shlosman I. 1992. Ap. J. 385:460–77
  52. Esquej P, Alonso-Herrero A, González-Martín O. et al. 2014. Ap. J. 780:86
  53. Feltre A, Hatziminaoglou E, Fritz J, Franceschini A. 2012. MNRAS 426:120–27
  54. Fischer TC, Crenshaw DM, Kraemer SB, Schmitt HR. 2013. Ap. J. Suppl. 209:1
  55. Fischer TC, Crenshaw DM, Kraemer SB, Schmitt HR, Turner TJ. 2014. Ap. J. 785:25
  56. Fritz J, Franceschini A, Hatziminaoglou E. 2006. MNRAS 366:767–86
  57. Gandhi P, Horst H, Smette A. et al. 2009. Astron. Astrophys. 502:457
  58. García-Burillo S, Combes F, Usero A. et al. 2014. Astron. Astrophys. 567:A125
  59. Gilli R, Comastri A, Hasinger G. 2007. Astron. Astrophys. 463:79–96
  60. Gilli R, Comastri A, Vignali C, Ranalli P, Iwasawa K. 2010. X-ray Astronomy 2009; Present Status, Multi-Wavelength Approach and Future Perspectives A Comastri, L Angelini, M Cappi AIP Conf. Proc. 1248359–64 Melville, NY: AIP
  61. Glass IS. 1992. MNRAS 256:P23–27
  62. Glikman E, Gregg MD, Lacy M. et al. 2004. Ap. J. 607:60–75
  63. Glikman E, Urrutia T, Lacy M. et al. 2012. Ap. J. 757:51
  64. González-Martín O, Rodríguez-Espinosa JM, Díaz-Santos T. et al. 2013. Astron. Astrophys. 553:A35
  65. Goulding AD, Alexander DM. 2009. MNRAS 398:1165–93
  66. Goulding AD, Alexander DM, Bauer FE. et al. 2012. Ap. J. 755:5
  67. Granato GL, Danese L, Franceschini A. 1997. Ap. J. 486:147–59
  68. Greenhill LJ, Booth RS, Ellingsen SP. et al. 2003. Ap. J. 590:162–73
  69. Haas M, Willner SP, Heymann F. et al. 2008. Ap. J. 688:122–27
  70. Hailey-Dunsheath S, Sturm E, Fischer J. et al. 2012. Ap. J. 755:57
  71. Hasinger G. 2008. Astron. Astrophys. 490:905–22
  72. Heckman T, Best P. 2014. Annu. Rev. Astron. Astrophys. 52:589
  73. Hernández-García L, González-Martín O, Márquez I, Masegosa J. 2013. Astron. Astrophys. 556:A47
  74. Hicks EKS, Davies RI, Malkan MA. et al. 2009. Ap. J. 696:448–70
  75. Ho LC. 2008. Annu. Rev. Astron. Astrophys. 46:475–539
  76. Hönig SF, Beckert T. 2007. MNRAS 380:1172–76
  77. Hönig SF, Kishimoto M, Gandhi P. et al. 2010. Astron. Astrophys. 515:A23
  78. Hönig SF, Kishimoto M, Tristram KRW. et al. 2013. Ap. J. 771:87
  79. Hönig SF, Leipski C, Antonucci R, Haas M. 2011. Ap. J. 736:26
  80. Ikeda S, Awaki H, Terashima Y. 2009. Ap. J. 692:608–17
  81. Imanishi M, Maiolino R, Nakagawa T. 2010. Ap. J. 709:801–15
  82. Iwasawa K, Taniguchi Y. 1993. Ap. J. Lett. 413:L15–18
  83. Jaffe W, Meisenheimer K, Röttgering HJA. et al. 2004. Nature 429:47–49
  84. Kartje JF, Königl A. 1996. Vistas Astron. 40:133–37
  85. Kaspi S, Smith PS, Netzer H. et al. 2000. Ap. J. 533:631–49
  86. Kauffmann G, Heckman TM, Tremonti C. et al. 2003. MNRAS 346:1055–77
  87. Kawaguchi T, Mori M. 2010. Ap. J. Lett. 724:L183
  88. Kawaguchi T, Mori M. 2011. Ap. J. 737:105
  89. Kewley LJ, Groves B, Kauffmann G, Heckman T. 2006. MNRAS 372:961–76
  90. Kinkhabwala A, Sako M, Behar E. et al. 2002. Ap. J. 575:732–46
  91. Kinney AL, Schmitt HR, Clarke CJ. et al. 2000. Ap. J. 537:152–77
  92. Kishimoto M. 1999. Ap. J. 518:676–92
  93. Kishimoto M, Hönig SF, Antonucci R. et al. 2011a. Astron. Astrophys. 527:A121
  94. Kishimoto M, Hönig SF, Antonucci R. et al. 2011b. Astron. Astrophys. 536:A78
  95. Kishimoto M, Hönig SF, Beckert T, Weigelt G. 2007. Astron. Astrophys. 476:713–21
  96. Königl A, Kartje JF. 1994. Ap. J. 434:446–67
  97. Koshida S, Minezaki T, Yoshii Y. et al. 2014. Ap. J. 788:159
  98. Koss M, Mushotzky R, Veilleux S. et al. 2011. Ap. J. 739:57
  99. Kraemer SB, Schmitt HR, Crenshaw DM. 2008. Ap. J. 679:1128–43
  100. Kraemer SB, Schmitt HR, Crenshaw DM. et al. 2011. Ap. J. 727:130
  101. Kreimeyer K, Veilleux S. 2013. Ap. J. Lett. 772:L11
  102. Krips M, Martín S, Eckart A. et al. 2011. Ap. J. 736:37
  103. Krolik JH. 1998. Active Galactic Nuclei: From the Central Black Hole to the Galactic Environment. Princeton, NJ: Princeton Univ. Press
  104. Krolik JH. 2007. Ap. J. 661:52–59
  105. Krolik JH, Begelman MC. 1988. Ap. J. 329:702
  106. Lacy M, Petric AO, Sajina A. et al. 2007. Astron. J. 133:186–205
  107. Lagos CDP, Padilla ND, Strauss MA, Cora SA, Hao L. 2011. MNRAS 414:2148–62
  108. LaMassa SM, Heckman TM, Ptak A. et al. 2011. Ap. J. 729:52
  109. Laor A. 2003. Ap. J. 590:86–94
  110. Laor A, Netzer H. 1989. MNRAS 238:897–916
  111. Lawrence A. 1991. R. Astron. Soc. 252:586–92
  112. Lawrence A, Elvis M. 1982. Ap. J. 256:410–26
  113. Lawrence A, Elvis M. 2010. Ap. J. 714:561–70
  114. Leipski C, Haas M, Willner SP. et al. 2010. Ap. J. 717:766–75
  115. Levenson NA, Radomski JT, Packham C. et al. 2009. Ap. J. 703:390–98
  116. Lira P, Videla L, Wu Y. et al. 2013. Ap. J. 764:159
  117. Lusso E, Hennawi JF, Comastri A. et al. 2013. Ap. J. 777:86
  118. Lusso E, Hennawi JF, Comastri A. et al. 2014. Ap. J. 784:176
  119. Lutz D, Maiolino R, Moorwood AFM. et al. 2002. Astron. Astrophys. 396:439–48
  120. Lutz D, Maiolino R, Spoon HWW, Moorwood AFM. 2004. Astron. Astrophys. 418:465–73
  121. Mainieri V, Bongiorno A, Merloni A. et al. 2011. Astron. Astrophys. 535:A80
  122. Maiolino R. 2008. New Astron. Rev. 52:339–57
  123. Maiolino R, Marconi A, Salvati M. et al. 2001. Astron. Astrophys. 365:28–36
  124. Maiolino R, Risaliti G, Salvati M. et al. 2010. Astron. Astrophys. 517:A47
  125. Maiolino R, Shemmer O, Imanishi M. et al. 2007. Astron. Astrophys. 468:979–92
  126. Malizia A, Bassani L, Bazzano A. et al. 2012. MNRAS 426:1750–66
  127. Malkan MA, Gorjian V, Tam R. 1998. Ap. J. Suppl. 117:25–88
  128. Maoz D. 2007. MNRAS 377:1696–710
  129. Marinucci A, Bianchi S, Nicastro F, Matt G, Goulding AD. 2012. Ap. J. 748:130
  130. Markowitz AG, Krumpe M, Nikutta R. 2014. MNRAS 439:1403–58
  131. Mayo JH, Lawrence A. 2013. MNRAS 434:1593–98
  132. Merloni A, Bongiorno A, Brusa M. et al. 2014. MNRAS 437:3550–67
  133. Merloni A, Heinz S. 2013. Planets, Stars and Stellar Systems TD Oswalt, WC Keel 6503–66 Dordrecht, Neth: Springer
  134. Meusinger H, Balafkan N. 2014. Astron. Astrophys. 568:A114
  135. Mor R, Netzer H. 2012. MNRAS 420:526–41
  136. Mor R, Netzer H, Elitzur M. 2009. Ap. J. 705:298–313
  137. Mor R, Trakhtenbrot B. 2011. Ap. J. Lett. 737:L36
  138. Mulchaey JS, Wilson AS, Tsvetanov Z. 1996. Ap. J. 467:197
  139. Mullaney JR, Alexander DM, Goulding AD, Hickox RC. 2011. MNRAS 414:1082–110
  140. Müller-Sánchez F, Prieto MA, Hicks EKS. et al. 2011. Ap. J. 739:69
  141. Narayan R. 2005. Ap. Space Sci. 300:177
  142. Narayanan D, Dey A, Hayward CC. et al. 2010. MNRAS 407:1701–20
  143. Nenkova M, Sirocky MM, Ivezić V, Elitzur M. 2008a. Ap. J. 685:147–59
  144. Nenkova M, Sirocky MM, Nikutta R, Ivezić V, Elitzur M. 2008b. Ap. J. 685:160–80
  145. Netzer H. 1993. Ap. J. 411:594–601
  146. Netzer H. 2009. MNRAS 399:1907–20
  147. Netzer H. 2013. The Physics and Evolution of Active Galactic Nuclei Cambridge, UK: Cambridge Univ. Press
  148. Netzer H, Laor A. 1993. Ap. J. Lett. 404:L51–54
  149. Netzer H, Trakhtenbrot B. 2014. MNRAS 438:672–79
  150. Nicastro F. 2000. Ap. J. Lett. 530:L65–68
  151. Ogle PM, Marshall HL, Lee JC, Canizares CR. 2000. Ap. J. Lett. 545:L81–84
  152. Osterbrock DE, Ferland GJ. 2006. Astrophysics of Gaseous Nebulae and Active Galactic Nuclei Sausalito, CA: Univ. Sci. Books, 2nd ed..
  153. Paggi A, Wang J, Fabbiano G, Elvis M, Karovska M. 2012. Ap. J. 756:39
  154. Panessa F, Bassani L. 2002. Astron. Astrophys. 394:435–42
  155. Peeters E, Spoon HWW, Tielens AGGM. 2004. Ap. J. 613:986–1003
  156. Peterson BM. 1997. An Introduction to Active Galactic Nuclei Cambridge, UK: Cambridge Univ. Press
  157. Pier EA, Krolik JH. 1992. Ap. J. 401:99
  158. Pogge RW. 1988. Ap. J. 328:519–22
  159. Pott JU, Malkan MA, Elitzur M. et al. 2010. Ap. J. 715:736–42
  160. Pozo Nuñez F, Haas M, Chini R. et al. 2014. Astron. Astrophys. 561:L8
  161. Prieto MA, Mezcua M, Fernández-Ontiveros JA, Schartmann M. 2014. MNRAS 442:2145–64
  162. Ramos Almeida C, Alonso-Herrero A, Levenson NA. et al. 2014. MNRAS 439:3847–59
  163. Ramos Almeida C, Levenson NA, Alonso-Herrero A. et al. 2011. Ap. J. 731:92
  164. Reyes R, Zakamska NL, Strauss MA. et al. 2008. Astron. J. 136:2373–90
  165. Ricci C, Paltani S, Awaki H. et al. 2013. Astron. Astrophys. 553:A29
  166. Rieke GH, Alonso-Herrero A, Weiner BJ. et al. 2009. Ap. J. 692:556–73
  167. Riffel R, Riffel RA, Ferrari F, Storchi-Bergmann T. 2011. MNRAS 416:493–500
  168. Riffel RA, Storchi-Bergmann T, Riffel R, Pastoriza MG. 2010. Ap. J. 713:469–74
  169. Riffel RA, Storchi-Bergmann T, Winge C. 2013. MNRAS 430:2249–61
  170. Risaliti G, Elvis M, Fabbiano G. et al. 2007. Ap. J. Lett. 659:L111–14
  171. Risaliti G, Elvis M, Nicastro F. 2002. Ap. J. 571:234–46
  172. Risaliti G, Nardini E, Salvati M. et al. 2011. MNRAS 410:1027–35
  173. Robson IEI. 1996. Active Galactic Nuclei. New York: Wiley
  174. Rosario DJ, Santini P, Lutz D. et al. 2013. Ap. J. 771:63
  175. Rosario DJ, Santini P, Lutz D. et al. 2012. Astron. Astrophys. 545:A45
  176. Roseboom IG, Lawrence A, Elvis M. et al. 2013. MNRAS 429:1494–501
  177. Sako M, Kahn SM, Paerels F, Liedahl DA. 2000. Ap. J. Lett. 543:L115–18
  178. Schartmann M, Burkert A, Krause M. et al. 2010. MNRAS 403:1801–11
  179. Schartmann M, Meisenheimer K, Camenzind M. et al. 2008. Astron. Astrophys. 482:67–80
  180. Schartmann M, Meisenheimer K, Camenzind M, Wolf S, Henning T. 2005. Astron. Astrophys. 437:861–81
  181. Schawinski K, Simmons BD, Urry CM, Treister E, Glikman E. 2012. MNRAS 425:L61–65
  182. Schneider R, Bianchi S, Valiante R, Risaliti G, Salvadori S. 2014. arXiv1402.2279
  183. Schnorr-Müller A, Storchi-Bergmann T, Nagar NM. et al. 2014. MNRAS 437:1708–24
  184. Schweitzer M, Groves B, Netzer H. et al. 2008. Ap. J. 679:101–17
  185. Shemmer O, Trakhtenbrot B, Anderson SF. et al. 2010. Ap. J. Lett. 722:L152–56
  186. Shi Y, Rieke GH, Smith P. et al. 2010. Ap. J. 714:115–29
  187. Simpson C. 2005. MNRAS 360:565–72
  188. Stalevski M, Fritz J, Baes M, Nakos T, Popović LC. 2012. MNRAS 420:2756–72
  189. Stern D, Eisenhardt P, Gorjian V. et al. 2005. Ap. J. 631:163–68
  190. Stern J, Laor A. 2012. MNRAS 426:2703–18
  191. Storchi-Bergmann T, Riffel RA, Riffel R. et al. 2012. Ap. J. 755:87
  192. Suganuma M, Yoshii Y, Kobayashi Y. et al. 2006. Ap. J. 639:46–63
  193. Swain M, Vasisht G, Akeson R. et al. 2003. Ap. J. Lett. 596:L163–66
  194. Tadhunter C. 2008. New Astron. Rev. 52:227–39
  195. Tadhunter C, Tsvetanov Z. 1989. Nature 341:422–24
  196. Tommasin S, Spinoglio L, Malkan MA, Fazio G. 2010. Ap. J. 709:1257–83
  197. Torricelli-Ciamponi G, Pietrini P, Risaliti G, Salvati M. 2014. MNRAS 442:2116–30
  198. Tran HD. 2003. Ap. J. 583:632–48
  199. Treister E, Krolik JH, Dullemond C. 2008. Ap. J. 679:140–48
  200. Tristram KRW, Burtscher L, Jaffe W. et al. 2014. Astron. Astrophys. 563:A82
  201. Trump JR, Impey CD, Taniguchi Y. et al. 2009. Ap. J. 706:797–809
  202. Turner TJ, Miller L. 2009. Astron. Astrophys. Rev. 17:47–104
  203. Ueda Y, Akiyama M, Ohta K, Miyaji T. 2003. Ap. J. 598:886–908
  204. Ueda Y, Eguchi S, Terashima Y. et al. 2007. Ap. J. Lett. 664:L79–82
  205. Urry CM, Padovani P. 1995. Publ. Astron. Soc. Pac. 107:803
  206. Urry M. 2003. Active Galactic Nuclei: From Central Engine to Host Galaxy S Collin, F Combes, I Shlosman ASP Conf. Ser. 2903 San Francisco: ASP
  207. Vardanyan V, Weedman D, Sargsyan L. 2014. Ap. J. 790:88
  208. Veilleux S, Kim DC, Peng CY. et al. 2006. Ap. J. 643:707–23
  209. Veilleux S, Kim DC, Rupke DSN. et al. 2009a. Ap. J. 701:587–606
  210. Veilleux S, Osterbrock DE. 1987. Ap. J. Suppl. 63:295–310
  211. Veilleux S, Rupke DSN, Kim DC. et al. 2009b. Ap. J. Suppl. Ser. 182:628–66
  212. Vito F, Vignali C, Gilli R. et al. 2013. MNRAS 428:354–69
  213. Vollmer B, Beckert T, Davies RI. 2008. Astron. Astrophys. 491:441–53
  214. Wada K. 2012. Ap. J. 758:66
  215. Wada K, Papadopoulos PP, Spaans M. 2009. Ap. J. 702:63–74
  216. Wang J, Fabbiano G, Elvis M. et al. 2011a. Ap. J. 742:23
  217. Wang JM, Ge JQ, Hu C. et al. 2011b. Ap. J. 739:3
  218. Wang JM, Qiu J, Du P, Ho LC. 2014. Ap. J. 797:65
  219. Wang JM, Yan CS, Gao HQ. et al. 2010. Ap. J. Lett. 719:L148–52
  220. Weaver KA, Meléndez M, Mushotzky RF. et al. 2010. Ap. J. 716:1151–65
  221. Weedman D, Sargsyan L, Lebouteiller V, Houck J, Barry D. 2012. Ap. J. 761:184
  222. Weigelt G, Hofmann KH, Kishimoto M. et al. 2012. Astron. Astrophys. 541:L9
  223. Yaqoob T, Murphy KD, Miller L, Turner TJ. 2010. MNRAS 401:411–17
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