What Do Statistics Reveal About the MBH-Mbulge Correlation and Co-Evolution?

被引:1
作者
Peng, Chien Y. [1 ]
机构
[1] Natl Res Council Canada, Herzberg Inst Astrophys, Victoria, BC V9E 2E7, Canada
来源
CO-EVOLUTION OF CENTRAL BLACK HOLES AND GALAXIES | 2010年 / 267期
关键词
galaxies: active; galaxies: nuclei; methods: numerical; methods: statistical; BLACK-HOLE MASS; COSMIC EVOLUTION; GALAXIES; LUMINOSITY; SIGMA; SPHEROIDS; QUASARS; OBJECTS; MODEL; SDSS;
D O I
10.1017/S1743921310006101
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Observational data show that the correlation between the masses of supermassive black holes M-BH and galaxy bulge masses M-bulge follows a nearly linear trend, and that the correlation is strongest with the bulge rather than the total stellar mass M-gal. With increasing redshift, the ratio Gamma = M-BH/M-bulge relative to z = 0 also seems to be larger for M-BH greater than or similar to 10(8.5) M-circle dot. This study looks more closely at statistics to see what effect it has on creating, and observing, the M-BH-M-bulge correlation. It is possible to show that if galaxy merging statistics can drive the correlation, minor mergers are responsible for causing a convergence to linearity most evident at high masses, whereas major mergers have a central limit convergence that more strongly reduces the scatter. This statistical reasoning is agnostic about galaxy morphology. Therefore, combining statistical prediction (more major mergers double right arrow tighter correlation) with observations (bulges = tightest correlation), would lead one to conclude that more major mergers (throughout an entire merger tree, not just the primary branch) give rise to more prominent bulges. Lastly, with regard to controversial findings that Gamma increases with redshift, this study shows why the luminosity function (LF) bias argument, taken correctly at face value, actually strengthens, rather than weakens, the findings. However, correcting for LF bias is unwarranted because the BH mass scale for quasars is bootstrapped to the MBH-sigma(*) correlation in normal galaxies at z = 0, and quasar-quasar comparisons are mostly internally consistent. In Monte-Carlo simulations, high Gamma galaxies are indeed present: they are statistical outliers (i.e., "under-merged") that take longer to converge to linearity via minor mergers. Additional evidence that the galaxies are undermassive at z greater than or similar to 2 for their M-BH is that the quasar hosts are very compact for their expected mass.
引用
收藏
页码:161 / 171
页数:11
相关论文
共 33 条
  • [1] Constraints from galaxy-AGN clustering on the correlation between galaxy and black hole mass at redshift 2 ≲ z ≲ 31
    Adelberger, KL
    Steidel, CC
    [J]. ASTROPHYSICAL JOURNAL, 2005, 627 (01) : L1 - L4
  • [2] Weighing the black holes in z≈2 submillimeter-emitting galaxies hosting active galactic nuclei
    Alexander, D. M.
    Brandt, W. N.
    Smail, I.
    Swinbank, A. M.
    Bauer, F. E.
    Blain, A. W.
    Chapman, S. C.
    Coppin, K. E. K.
    Ivison, R. J.
    Menendez-Delmestre, K.
    [J]. ASTRONOMICAL JOURNAL, 2008, 135 (05) : 1968 - 1981
  • [3] The MBH-σc relation as a constraint on the formation of elliptical galaxies
    Ciotti, L
    van Albada, TS
    [J]. ASTROPHYSICAL JOURNAL, 2001, 552 (01) : L13 - L16
  • [4] Energy input from quasars regulates the growth and activity of black holes and their host galaxies
    Di Matteo, T
    Springel, V
    Hernquist, L
    [J]. NATURE, 2005, 433 (7026) : 604 - 607
  • [5] A fundamental relation between supermassive black holes and their host galaxies
    Ferrarese, L
    Merritt, D
    [J]. ASTROPHYSICAL JOURNAL, 2000, 539 (01) : L9 - L12
  • [6] The evolution of host mass and black hole mass in quasi-stellar objects from the 2dF QSO Redshift Survey
    Fine, S.
    Croom, S. M.
    Miller, L.
    Babic, A.
    Moore, D.
    Brewer, B.
    Sharp, R. G.
    Boyle, B. J.
    Shanks, T.
    Smith, R. J.
    Outram, P. J.
    Loaring, N. S.
    [J]. MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2006, 373 (02) : 613 - 622
  • [7] A relationship between nuclear black hole mass and galaxy velocity dispersion
    Gebhardt, K
    Bender, R
    Bower, G
    Dressler, A
    Faber, SM
    Filippenko, AV
    Green, R
    Grillmair, C
    Ho, LC
    Kormendy, J
    Lauer, TR
    Magorrian, J
    Pinkney, J
    Richstone, D
    Tremaine, S
    [J]. ASTROPHYSICAL JOURNAL, 2000, 539 (01) : L13 - L16
  • [8] A physical model for the coevolution of QSOs and their spheroidal hosts
    Granato, GL
    De Zotti, G
    Silva, L
    Bressan, A
    Danese, L
    [J]. ASTROPHYSICAL JOURNAL, 2004, 600 (02) : 580 - 594
  • [9] On the black hole mass-bulge mass relation
    Häring, N
    Rix, HW
    [J]. ASTROPHYSICAL JOURNAL, 2004, 604 (02) : L89 - L92
  • [10] An observed fundamental plane relation for supermassive black holes
    Hopkins, Philip F.
    Hernquist, Lars
    Cox, Thomas J.
    Robertson, Brant
    Krause, Elisabeth
    [J]. ASTROPHYSICAL JOURNAL, 2007, 669 (01) : 67 - 73