Testing the Large-Scale Environments of Cool-core and Noncool-core Clusters with Clustering Bias
Abstract
There are well-observed differences between cool-core (CC) and non-cool-core (NCC) clusters, but the origin of this distinction is still largely unknown. Competing theories can be divided into internal (inside-out), in which internal physical processes transform or maintain the NCC phase, and external (outside-in), in which the cluster type is determined by its initial conditions, which in turn lead to different formation histories (i.e., assembly bias). We propose a new method that uses the relative assembly bias of CC to NCC clusters, as determined via the two-point cluster-galaxy cross-correlation function (CCF), to test whether formation history plays a role in determining their nature. We apply our method to 48 ACCEPT clusters, which have well resolved central entropies, and cross-correlate with the SDSS-III/BOSS LOWZ galaxy catalog. We find that the relative bias of NCC over CC clusters is ( different from unity). Our measurement is limited by the small number of clusters with core entropy information within the BOSS footprint, 14 CC and 34 NCC. Future compilations of X-ray cluster samples, combined with deep all-sky redshift surveys, will be able to better constrain the relative assembly bias of CC and NCC clusters and determine the origin of the bimodality.
Keywords
Cite
@article{arxiv.1610.01624,
title = {Testing the Large-Scale Environments of Cool-core and Noncool-core Clusters with Clustering Bias},
author = {Elinor Medezinski and Nicholas Battaglia and Jean Coupon and Renyue Cen and Massimo Gaspari and Michael A. Strauss and David N. Spergel},
journal= {arXiv preprint arXiv:1610.01624},
year = {2017}
}
Comments
8 pages, 7 figures, replaced with ApJ published version; figure added to address referee's comments