Quasar outflows at $z \geq 6$: the impact on the host galaxies
Abstract
We investigate quasar outflows at by performing zoom-in cosmological hydrodynamical simulations. By employing the SPH code GADGET-3, we zoom in the region around a halo at , inside a comoving volume. We compare the results of our AGN runs with a control simulation in which only stellar/SN feedback is considered. Seeding BHs at the centers of halos, we find the following results. BHs accrete gas at the Eddington rate over . At , our most-massive BH has grown to . Fast ( km/s), powerful (/yr) outflows of shock-heated low-density gas form at , and propagate up to hundreds kpc. Star-formation is quenched over , and the total SFR (SFR surface density near the galaxy center) is reduced by a factor of (). We analyse the relative contribution of multiple physical process: (i) disrupting cosmic filamentary cold gas inflows, (ii) reducing central gas density, (iii) ejecting gas outside the galaxy; and find that AGN feedback has the following effects at . The inflowing gas mass fraction is reduced by , the high-density gas fraction is lowered by , and of the gas outflows at a speed larger than the escape velocity ( km/s). We conclude that quasar-host galaxies at are accreting non-negligible amount of cosmic gas, nevertheless AGN feedback quenches their star formation dominantly by powerful outflows ejecting gas out of the host galaxy halo.
Keywords
Cite
@article{arxiv.1707.03014,
title = {Quasar outflows at $z \geq 6$: the impact on the host galaxies},
author = {Paramita Barai and Simona Gallerani and Andrea Pallottini and Andrea Ferrara and Alessandro Marconi and Claudia Cicone and Roberto Maiolino and Stefano Carniani},
journal= {arXiv preprint arXiv:1707.03014},
year = {2017}
}
Comments
17 pages (excluding references and appendix), 11 figures, Submitted