Detecting Intracluster Gas Motion in Galaxy Clusters: Mock Astro-E2 Observations
Abstract
We explore the detectability of bulk motions in the X-ray emitting intracluster medium (ICM) using a catalog of 1,836 mock Astro-E2 observations of simulated clusters of galaxies. We generate high resolution mock spectra for two observing strategies: a four-pointing mosaic and a single central pointing. Normalizing to 200 (400) photons in the iron K-alpha region for the mosaic (central) study, we fit Poisson realizations of each simulated spectrum to a velocity broadened isothermal plasma emission model. We confirm that the velocity characteristics (mean and dispersion) returned by the spectral fittings are unbiased measures of the emission-weighted values within the observed region, with scatter 55 km/s. The maximum velocity difference between mosaic element pairs has ~ 6% likelihood of being transonic (), and the likelihood falls steeply, , at high Mach number. The velocity broadening parameter from the central pointing fit exceeds the thermal value in 49% of the cases, with again a tail at large dispersion. We present as case studies the clusters that yield the strongest signal for each observing strategy.
Cite
@article{arxiv.astro-ph/0503281,
title = {Detecting Intracluster Gas Motion in Galaxy Clusters: Mock Astro-E2 Observations},
author = {Andrew Pawl and August E. Evrard and Renato A. Dupke},
journal= {arXiv preprint arXiv:astro-ph/0503281},
year = {2009}
}
Comments
13 pages, 20 figures. Submitted to ApJ. Version with postscript figures embedded in the text available at http://www.umich.edu/~apawl/astroe2/. Version 2 includes changes in response to referee report and corrects an error in optical depth estimates