SIMBAD references

2016MNRAS.456L.109K - Mon. Not. R. Astron. Soc., 456, L109-L112 (2016/February-2)

How big can a black hole grow?

KING A.

Abstract (from CDS):

I show that there is a physical limit to the mass of a black hole, above which it cannot grow through luminous accretion of gas, and so cannot appear as a quasar or active galactic nucleus (AGN). The limit is Mmax ≃ 5x1010M for typical parameters, but can reach Mmax ≃ 2.7x1011M in extreme cases (e.g. maximal prograde spin). The largest black hole masses so far found are close to but below the limit. The Eddington luminosity ≃ 6.5x1048erg/s corresponding to Mmax is remarkably close to the largest AGN bolometric luminosity so far observed. The mass and luminosity limits both rely on a reasonable but currently untestable hypothesis about AGN disc formation, so future observations of extreme supermassive black hole masses can therefore probe fundamental disc physics. Black holes can in principle grow their masses above Mmax by non-luminous means such as mergers with other holes, but cannot become luminous accretors again. They might nevertheless be detectable in other ways, for example through gravitational lensing. I show further that black holes with masses ∼ Mmax can probably grow above the values specified by the black-hole-host-galaxy scaling relations, in agreement with observation.

Abstract Copyright: © 2015 The Author Published by Oxford University Press on behalf of the Royal Astronomical Society (2015)

Journal keyword(s): black hole physics - galaxies: active - quasars: general - galaxies: Seyfert - X-rays: galaxies

Simbad objects: 4

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