The Hidden Mass and Large Spatial Extent of a Poststarburst Galaxy Outflow
Abstract
Outflowing winds of multiphase plasma have been proposed to regulate the buildup of galaxies, but key aspects of these outflows have not been probed with observations. Using ultraviolet absorption spectroscopy, we show that "warm-hot" plasma at 10^{5.5} K contains 10-150 times more mass than the cold gas in a poststarburst galaxy wind. This wind extends to distances >68 kiloparsecs, and at least some portion of it will escape. Moreover, the kinematical correlation of the cold and warm-hot phases indicates that the warm-hot plasma is related to the interaction of the cold matter with a hotter (unseen) phase at >>10^{6} K. Such multiphase winds can remove substantial masses and alter the evolution of poststarburst galaxies.
Keywords
Cite
@article{arxiv.1111.3982,
title = {The Hidden Mass and Large Spatial Extent of a Poststarburst Galaxy Outflow},
author = {Todd M. Tripp and Joseph D. Meiring and J. Xavier Prochaska and Christopher N. A. Willmer and J. Christopher Howk and Jessica K. Werk and Edward B. Jenkins and David V. Bowen and Nicolas Lehner and Kenneth R. Sembach and Christopher Thom and Jason Tumlinson},
journal= {arXiv preprint arXiv:1111.3982},
year = {2015}
}
Comments
This paper is part of a set of three papers on circumgalactic gas observed with the Cosmic Origins Spectrograph on HST, to be published in Science, together with related papers by Tumlinson et al. and Lehner & Howk, in the November 18, 2011 edition. This version has not undergone final copyediting. Please see Science online for the final printed version