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The M-sigma relation in different environments

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journal contribution
posted on 2016-05-18, 10:59 authored by K. Zubovas, Andrew R. King
Galaxies become red and dead when the central supermassive black hole (SMBH) becomes massive enough to drive an outflow beyond the virial radius of the halo. We show that this final SMBH mass is larger than the final SMBH mass in the bulge of a spiral galaxy by up to an order of magnitude. The M‒σ relations in the two galaxy types are almost parallel (M ∝ σ4 + β, with β < 1) but offset in normalization, with the extra SMBH mass supplied by the major merger transforming the galaxy into an elliptical, or by mass gain in a galaxy cluster. This agrees with recent findings that the SMBH in two brightest cluster Galaxies are ∼10 × the expected M‒σ mass. We show that these results do not strongly depend on the assumed profile of the dark matter halo, so analytic estimates found for an isothermal potential are approximately valid in all realistic cases. Our results imply that there are in practice actually three M‒σ relations, corresponding to spiral galaxies with evolved bulges, field elliptical galaxies and cluster centre elliptical galaxies. A fourth relation, corresponding to cluster spiral galaxies, is also possible, but such galaxies are expected to be rare. All these relations have the form MBH = Cnσ4, with only a slight difference in slope between field and cluster galaxies, but with slightly different coefficients Cn. Conflating data from galaxies of different types and fitting a single relation to them tends to produce a higher power of σ.

History

Citation

Monthly Notices of the Royal Astronomical Society, 2012, 426 (4), pp. 2751-2757

Author affiliation

/Organisation/COLLEGE OF SCIENCE AND ENGINEERING/Department of Physics and Astronomy

Version

  • VoR (Version of Record)

Published in

Monthly Notices of the Royal Astronomical Society

Publisher

Oxford University Press for Royal Astronomical Society

issn

0035-8711

eissn

1365-2966

Copyright date

2012

Available date

2016-05-18

Publisher version

http://mnras.oxfordjournals.org/content/426/4/2751

Language

en