Feeding compact bulges and supermassive black holes with low angular-momentum cosmic gas at high redshift
Cosmology and Nongalactic Astrophysics
2015-06-03 v2
Abstract
We use cosmological hydrodynamical simulations to show that a significant fraction of the gas in high redshift rare massive halos falls nearly radially to their very centre on extremely short timescales. This process results in the formation of very compact bulges with specific angular momentum a factor 5-30smallerthantheaverageangularmomentumofthebaryonsinthewholehalo.Suchlowangularmomentumoriginatesbothfromsegregationandeffectivecancellationwhenthegasflowstothecentreofthehaloalongwelldefinedcoldfilamentarystreams.Thesefilamentspenetratedeepinsidethehaloandconnecttothebulgefrommultiplerapidlychangingdirections.Structuresfallinginalongthefilaments(satellitegalaxies)orformedbygravitationalinstabilitiestriggeredbytheinflow(starclusters)furtherreducetheangularmomentumofthegasinthebulge.Finally,thefractionofgasradiallyfallingtothecentreappearstoincreasewiththemassofthehalo;wearguethatthisismostlikelyduetoanenhancedcancellationofangularmomentuminrarerhaloswhicharefedbymoreisotropicallydistributedcoldstreams.Suchanincreasinglyefficientfunnellingoflow−angularmomentumgastothecentreofverymassivehalosathighredshiftmayaccountfortherapidpaceatwhichthemostmassivesupermassiveblackholesgrowtoreachobservedmassesaround10^9M_\odot$ at an epoch when the Universe is barely 1 Gyr old.
Cite
@article{arxiv.1112.2479,
title = {Feeding compact bulges and supermassive black holes with low angular-momentum cosmic gas at high redshift},
author = {Yohan Dubois and Christophe Pichon and Martin Haehnelt and Taysun Kimm and Adrianne Slyz and Julien Devriendt and Dmitry Pogosyan},
journal= {arXiv preprint arXiv:1112.2479},
year = {2015}
}
Comments
17 pages, 13 figures, MNRAS accepted