English

The Scale-Dependence of Halo Assembly Bias

Cosmology and Nongalactic Astrophysics 2016-03-23 v1

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, VmaxV_{\rm max}, 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, r10h1Mpc,r\geq10h^{-1}{\rm Mpc}, our findings are in keeping with previous results. In particular, at the low-mass end (Mvir<Mcoll1012.5MM_{\rm vir}<M_{\rm coll}\approx10^{12.5}{\rm M}_{\odot}), halos with high-VmaxV_{\rm max} show stronger large-scale clustering relative to halos with low-VmaxV_{\rm max} of the same mass, this trend weakens and reverses for MvirMcoll.M_{\rm vir}\geq M_{\rm coll}. In the nonlinear regime, assembly bias in low-mass halos exhibits a pronounced scale-dependent "bump" at 500h1kpc5h1Mpc,500h^{-1}{\rm kpc}-5h^{-1}{\rm Mpc}, 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 r12h1Mpcr\sim1-2h^{-1}{\rm Mpc} can be impacted by up to 15%\sim15\% 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