The Scale-Dependence of Halo Assembly Bias
Abstract
The two-point clustering of dark matter halos is influenced by halo properties besides mass, a phenomenon referred to as halo assembly bias. Using the depth of the gravitational potential well, , as our secondary halo property, in this paper we present the first study of the scale-dependence assembly bias. In the large-scale linear regime, our findings are in keeping with previous results. In particular, at the low-mass end (), halos with high- show stronger large-scale clustering relative to halos with low- of the same mass, this trend weakens and reverses for In the nonlinear regime, assembly bias in low-mass halos exhibits a pronounced scale-dependent "bump" at a new result. This feature weakens and eventually vanishes for halos of higher mass. We show that this scale-dependent signature can primarily be attributed to a special subpopulation of ejected halos, defined as present-day host halos that were previously members of a higher-mass halo at some point in their past history. A corollary of our results is that galaxy clustering on scales of can be impacted by up to by the choice of the halo property used in the halo model, even for stellar mass-limited samples.
Keywords
Cite
@article{arxiv.1509.06417,
title = {The Scale-Dependence of Halo Assembly Bias},
author = {Tomomi Sunayama and Andrew P. Hearin and Nikhil Padmanabhan and Alexie Leauthaud},
journal= {arXiv preprint arXiv:1509.06417},
year = {2016}
}
Comments
7 pages, 4 figures, submitted to MNRAS