The descendants of the first quasars in the BlueTides simulation
Abstract
Supermassive blackholes with masses of a billion solar masses or more are known to exist up to . However, the present-day environments of the descendants of first quasars is not well understood and it is not known if they live in massive galaxy clusters or more isolated galaxies at . We use a dark matter-only realization (BTMassTracer) of the BlueTides cosmological hydrodynamic simulation to study the halo properties of the descendants of the most massive black holes at . We find that the descendants of the quasars with most massive black holes are not amongst the most massive halos. They reside in halos of with group-like () masses, while the most massive halos in the simulations are rich clusters with masses . The distribution of halo masses at low redshift is similar to that of the descendants of least massive black holes, for a similar range of halo masses at , which indicates that they are likely to exist in similar environments. By tracing back to the progenitors of the most massive (cluster sized) halos at ; we find that their most likely black hole mass is less than ; they are clearly not amongst the most massive black holes. We also provide estimates for the likelihood of finding a high redshift quasar hosting a black hole with masses above for a given halo mass at . For halos above , there is only probability that their progenitors hosted a black hole with mass above .
Keywords
Cite
@article{arxiv.1708.03373,
title = {The descendants of the first quasars in the BlueTides simulation},
author = {Ananth Tenneti and Tiziana Di Matteo and Rupert Croft and ThomasJae Garcia and Yu Feng},
journal= {arXiv preprint arXiv:1708.03373},
year = {2017}
}
Comments
7 pages, 7 figures, submitted to MNRAS