Gravitational interactions of stars with supermassive black hole binaries - II. Hypervelocity stars
Abstract
Supermassive black holes (SMBHs) in galactic nuclei can eject hypervelocity stars (HVSs). Using restricted three-body integrations, we study the properties of stars ejected by circular, binary SMBHs as a function of their mass ratios and separations , focusing on the stellar velocity and angular distributions. We find that the ejection probability is an increasing function of and , and that the mean ejected velocity scales with and similar to previous work but with modified scaling constants. Binary SMBHs tend to eject their fastest stars toward the binary orbital plane. We calculate the ejection rates as the binary SMBHs inspiral, and find that they eject stars with velocities km/s at rates of yr for ( yr for ) over their lifetimes, and can emit a burst of HVSs with km/s as they coalesce. We integrate the stellar distributions over the binary SMBH inspiral and compare them to those produced by the "Hills mechanism" (in which a single SMBH ejects a star after tidally separating a binary star system), and find that HVS velocity samples with km/s are needed to confidently distinguish between a binary and single SMBH origin.
Keywords
Cite
@article{arxiv.1810.05312,
title = {Gravitational interactions of stars with supermassive black hole binaries - II. Hypervelocity stars},
author = {Siva Darbha and Eric R. Coughlin and Daniel Kasen and Eliot Quataert},
journal= {arXiv preprint arXiv:1810.05312},
year = {2018}
}
Comments
19 pages, 16 figures