Hostname: page-component-8448b6f56d-t5pn6 Total loading time: 0 Render date: 2024-04-25T03:58:59.363Z Has data issue: false hasContentIssue false

Black Hole Feeding and Feedback in the Context of Galaxy Formation

Published online by Cambridge University Press:  03 June 2010

Rachel S. Somerville*
Affiliation:
Space Telescope Science Institute, 3700 San Martin Dr., Baltimore, MD 21218, USA Department of Physics and Astronomy, Johns Hopkins University, Baltimore, MD 21218, USA
Rights & Permissions [Opens in a new window]

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

I describe ways in which state-of-the-art cosmological simulations are modeling the growth and evolution of supermassive black holes (feeding), and the impact of the energy that they release on galaxies and their surroundings (feedback). I then discuss how this new picture of interconnected co-evolution of galaxies and black holes provides plausible explanations for several of the mysteries that have long vexed theorists studying galaxy formation within the hierarchical cold dark matter paradigm.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2010

References

Allen, S. W., Dunn, R. J. H., Fabian, A. C., Taylor, G. B., & Reynolds, C. S. 2006, MNRAS, 372, 21CrossRefGoogle Scholar
Barnes, J. E. 1988, ApJ, 331, 699CrossRefGoogle Scholar
Barnes, J. E. 1992, ApJ, 393, 484CrossRefGoogle Scholar
Barnes, J. & Hernquist, L. 1996, ApJ, 471, 115CrossRefGoogle Scholar
Baugh, C. M. 2006, Reports of Progress in Physics, 69, 3101CrossRefGoogle Scholar
Best, P. N., Kaiser, C. R., Heckman, T. M., & Kauffmann, G. 2006, MNRAS, 368, L67CrossRefGoogle Scholar
Birnboim, Y. & Dekel, A. 2003, MNRAS, 345, 349CrossRefGoogle Scholar
Booth, C. M. & Schaye, J. 2009, MNRAS, 398, 53CrossRefGoogle Scholar
Bower, R. G., Benson, A. J., Malbon, R., Helly, J. C., Frenk, C. S., Baugh, C. M., Cole, S., & Lacey, C. G. 2006, MNRAS, 370, 645CrossRefGoogle Scholar
Bower, R. G., McCarthy, I. G., & Benson, A. J. 2008, MNRAS, 390, 1399Google Scholar
Cattaneo, A., Dekel, A., Devriendt, J., Guiderdoni, B., & Blaizot, J. 2006, MNRAS, 370, 1651CrossRefGoogle Scholar
Cox, T. J., Di Matteo, T., Hernquist, L., Hopkins, P. F., Robertson, B., & Springel, V. 2006, ApJ, 643, 692CrossRefGoogle Scholar
Croton, D. J., et al. 2006, MNRAS, 365, 11CrossRefGoogle Scholar
Croton, D. J. 2006, MNRAS, 369, 1808CrossRefGoogle Scholar
Dekel, A. & Cox, T. J. 2006, MNRAS, 370, 1445CrossRefGoogle Scholar
Dekel, A., Sari, R., & Ceverino, D. 2009, ApJ, 703, 785CrossRefGoogle Scholar
Di Matteo, T., Springel, V., & Hernquist, L. 2005, Nature, 433, 604CrossRefGoogle Scholar
Di Matteo, T., Colberg, J., Springel, V., Hernquist, L., & Sijacki, D. 2007, ApJ, 676, 33CrossRefGoogle Scholar
Gebhardt, K., et al. 2000, ApJ, 539, L13CrossRefGoogle Scholar
Fabian, A. C. 1994, ARAA, 32, 277CrossRefGoogle Scholar
Ferrarese, L. & Merritt, D. 2000, ApJ, 539, L9CrossRefGoogle Scholar
Fontanot, F., De Lucia, G., Monaco, P., Somerville, R. S., & Santini, P. 2009, MNRAS, 397, 1776CrossRefGoogle Scholar
Häring, N. & Rix, H.-W. 2004, ApJ, 604, L89CrossRefGoogle Scholar
Hernquist, L. 1989, Nature, 340, 687CrossRefGoogle Scholar
Hernquist, L. 1992, ApJ, 400, 460CrossRefGoogle Scholar
Hopkins, P. F., Hernquist, L., Cox, T. J., Di Matteo, T., Robertson, B., & Springel, V. 2005b, ApJ, 630, 716CrossRefGoogle Scholar
Hopkins, P. F., Hernquist, L., Cox, T. J., Di Matteo, T., Robertson, B., & Springel, V. 2006a, ApJS, 163, 1CrossRefGoogle Scholar
Hopkins, P. F., Hernquist, L., Cox, T. J., Robertson, B., & Krause, E. 2007a, ApJ, 669, 45CrossRefGoogle Scholar
Hopkins, P. F., Hernquist, L., Cox, T. J., Robertson, B., & Krause, E. 2007c, ApJ, 669, 67CrossRefGoogle Scholar
Hopkins, P. F., Richards, G. T., & Hernquist, L. 2007b, ApJ, 654, 731CrossRefGoogle Scholar
Hopkins, P. F., Hernquist, L., Cox, T. J., & Kereš, D. 2008a, ApJS, 175, 356CrossRefGoogle Scholar
Hopkins, P. F., Cox, T. J., Kereš, D., & Hernquist, L. 2008b, ApJS, 175, 390CrossRefGoogle Scholar
Hopkins, P. F. & Elvis, M. 2010, MNRAS, 401, 7CrossRefGoogle Scholar
Hopkins, P. F., Somerville, R. S., Cox, T. J., Hernquist, L., Jogee, S., Kereš, D., Ma, C.-P., Robertson, B., & Stewart, K. 2009, MNRAS, 397, 802CrossRefGoogle Scholar
Johansson, P. H., Naab, T., & Burkert, A. 2009, ApJ, 690, 802CrossRefGoogle Scholar
Kang, X., Jing, Y. P., & Silk, J. 2006, ApJ, 648, 820CrossRefGoogle Scholar
Kauffmann, G., et al. 2003, MNRAS, 341, 54CrossRefGoogle Scholar
Kereš, D., Katz, N., Weinberg, D. H., & Davé, R. 2005, MNRAS, 363, 2CrossRefGoogle Scholar
Kereš, D., Katz, N., Fardal, M., Davé, R., & Weinberg, D. H. 2009, MNRAS, 395, 160CrossRefGoogle Scholar
Kimm, T., et al. 2009, MNRAS, 394, 1131CrossRefGoogle Scholar
Lloyd-Davies, E. J., Ponman, T. J., & Cannon, D. B. 2000, MNRAS, 315, 689CrossRefGoogle Scholar
Malbon, R. K., Baugh, C. M., Frenk, C. S., & Lacey, C. G. 2007, MNRAS, 382, 1394CrossRefGoogle Scholar
Marconi, A. & Hunt, L. K. 2003, ApJ, 589, L21CrossRefGoogle Scholar
McNamara, B. R. & Nulsen, P. E. J. 2007, ARAA, 45, 117CrossRefGoogle Scholar
Menci, N., Fontana, A., Giallongo, E., Grazian, A., & Salimbeni, S. 2006, ApJ, 647, 753CrossRefGoogle Scholar
Mihos, J. C. & Hernquist, L. 1994, ApJ, 425, 13CrossRefGoogle Scholar
Monaco, P., Fontanot, F., & Taffoni, G. 2007, MNRAS, 375, 1189CrossRefGoogle Scholar
Ocvirk, P., Pichon, C., & Teyssier, R. 2008, MNRAS, 390, 1326Google Scholar
Pasquali, A., van den Bosch, F. C., Mo, H. J., Yang, X., & Somerville, R. 2009, MNRAS, 394, 38CrossRefGoogle Scholar
Peng, C. Y., Impey, C. D., Rix, H.-W., Kochanek, C. S., Keeton, C. R., Falco, E. E., Lehár, J., & McLeod, B. A. 2006, ApJ, 649, 616CrossRefGoogle Scholar
Peterson, J. R. & Fabian, A. C. 2006, Phys. Rev., 427, 1Google Scholar
Rafferty, D. A., McNamara, B. R., Nulsen, P. E. J., & Wise, M. W. 2006, ApJ, 652, 216CrossRefGoogle Scholar
Robaina, A. R., et al. 2009, ApJ, 704, 324CrossRefGoogle Scholar
Robertson, B., Bullock, J. S., Cox, T. J., Di Matteo, T., Hernquist, L., Springel, V., & Yoshida, N. 2006a, ApJ, 645, 986CrossRefGoogle Scholar
Robertson, B., Cox, T. J., Hernquist, L., Franx, M., Hopkins, P. F., Martini, P., & Springel, V. 2006b, ApJ, 641, 21CrossRefGoogle Scholar
Robertson, B., Hernquist, L., Cox, T. J., Di Matteo, T., Hopkins, P. F., Martini, P., & Springel, V. 2006c, ApJ, 641, 90CrossRefGoogle Scholar
Salviander, S., Shields, G. A., Gebhardt, K., & Bonning, E. W. 2007, ApJ, 662, 131CrossRefGoogle Scholar
Schawinski, K., et al. 2009, ApJ, 690, 1672CrossRefGoogle Scholar
Sijacki, D., Springel, V., Di Matteo, T., & Hernquist, L. 2007, MNRAS, 380, 877CrossRefGoogle Scholar
Somerville, R. S., Hopkins, P., Cox, T. J., Robertson, B. E., & Hernquist, L. 2008, MNRAS, 391, 481 (S08)CrossRefGoogle Scholar
Springel, V., Di Matteo, T., & Hernquist, L. 2005a, ApJ, 620, L79CrossRefGoogle Scholar
Springel, V., Di Matteo, T., & Hernquist, L. 2005b, MNRAS, 361, 776CrossRefGoogle Scholar
Toomre, A. & Toomre, J. 1972, ApJ, 178, 623CrossRefGoogle Scholar
Vernaleo, J. C. & Reynolds, C. S. 2006, ApJ, 645, 83CrossRefGoogle Scholar
Voit, G. M., Cavagnolo, K. W., Donahue, M., Rafferty, D. A., McNamara, B. R., & Nulsen, P. E. J. 2008, ApJ, 681, 5CrossRefGoogle Scholar
Woo, J.-H., Treu, T., Malkan, M. A., & Blandford, R. D. 2008, ApJ, 681, 925CrossRefGoogle Scholar
Zheng, X. Z., et al. 2009, ApJ, 707, 1566CrossRefGoogle Scholar