Massive Warm/Hot Galaxy Coronae: II. Isentropic Model
Abstract
We construct a new analytic phenomenological model for the extended circumgalactic material (CGM) of galaxies. Our model reproduces the OVII/OVIII absorption observations of the Milky Way (MW) and the OVI measurements reported by the COS-Halos and eCGM surveys. The warm/hot gas is in hydrostatic equilibrium in a MW gravitational potential, and we adopt a barotropic equation of state, resulting in a temperature variation as a function of radius. A pressure component with an adiabatic index of is included to approximate the effects of a magnetic field and cosmic rays. We introduce a metallicity gradient motivated by the enrichment of the inner CGM by the Galaxy. We then present our fiducial model for the corona, tuned to reproduce the observed OVI-OVIII column densities, and with a total mass of inside kpc. The gas densities in the CGM are low () and its collisional ionization state is modified by the metagalactic radiation field (MGRF). We show that for OVI-bearing warm/hot gas with typical observed column densities at large ( kpc) impact parameters from the central galaxies, the ratio of the cooling to dynamical times, , has a model-independent upper limit of . In our model, at large radii is . We present predictions for a wide range of future observations of the warm/hot CGM, from UV/X-ray absorption and emission spectroscopy, to dispersion measure (DM) and Sunyaev-Zeldovich CMB measurements. We provide the model outputs in machine-readable data files, for easy comparison and analysis.
Cite
@article{arxiv.1909.09169,
title = {Massive Warm/Hot Galaxy Coronae: II. Isentropic Model},
author = {Yakov Faerman and Amiel Sternberg and Christopher F. McKee},
journal= {arXiv preprint arXiv:1909.09169},
year = {2020}
}
Comments
24 pages, 15 figures. Accepted to ApJ