Following Black Hole Scaling Relations Through Gas-Rich Mergers
Abstract
We present black hole mass measurements from kinematic modeling of high-spatial resolution integral field spectroscopy of the inner regions of 9 nearby (ultra-)luminous infrared galaxies in a variety of merger stages. These observations were taken with OSIRIS and laser guide star adaptive optics on the Keck I and Keck II telescopes, and reveal gas and stellar kinematics inside the spheres of influence of these supermassive black holes. We find that this sample of black holes are overmassive ( M) compared to the expected values based on black hole scaling relations, and suggest that the major epoch of black hole growth occurs in early stages of a merger, as opposed to during a final episode of quasar-mode feedback. The black hole masses presented are the dynamical masses enclosed in 25pc, and could include gas which is gravitationally bound to the black hole but has not yet lost sufficient angular momentum to be accreted. If present, this gas could in principle eventually fuel AGN feedback or be itself blown out from the system.
Keywords
Cite
@article{arxiv.1502.06617,
title = {Following Black Hole Scaling Relations Through Gas-Rich Mergers},
author = {Anne M. Medling and Vivian U. and Claire E. Max and David B. Sanders and Lee Armus and Bradford Holden and Etsuko Mieda and Shelley A. Wright and James E. Larkin},
journal= {arXiv preprint arXiv:1502.06617},
year = {2015}
}
Comments
accepted to ApJ