The Fastest Unbound Stars in the Universe
Abstract
The discovery of hypervelocity stars (HVS) leaving our galaxy with speeds of nearly km s has provided strong evidence towards the existence of a massive compact object at the galaxy's center. HVS ejected via the disruption of stellar binaries can occasionally yield a star with km s, here we show that this mechanism can be extended to massive black hole (MBH) mergers, where the secondary star is replaced by a MBH with mass . We find that stars that are originally bound to the secondary MBH are frequently ejected with km s, and occasionally with velocities km s (one third the speed of light), for this reason we refer to stars ejected from these systems as "semi-relativistic" hypervelocity stars (SHS). Bound to no galaxy, the velocities of these stars are so great that they can cross a significant fraction of the observable universe in the time since their ejection (several Gpc). We demonstrate that if a significant fraction of MBH mergers undergo a phase in which their orbital eccentricity is and their periapse distance is tens of the primary's Schwarzschild radius, the space density of fast-moving ( km s) SHS may be as large as Mpc. Hundreds of the SHS will be giant stars that could be detected by future all-sky infrared surveys such as WFIRST or Euclid and proper motion surveys such as LSST, with spectroscopic follow-up being possible with JWST.
Keywords
Cite
@article{arxiv.1411.5022,
title = {The Fastest Unbound Stars in the Universe},
author = {James Guillochon and Abraham Loeb},
journal= {arXiv preprint arXiv:1411.5022},
year = {2015}
}
Comments
20 pages, 18 figures. Accepted by ApJ