English

Testing the conditional mass function of dark matter halos against numerical N-body simulations

Cosmology and Nongalactic Astrophysics 2017-02-08 v1

Abstract

We compare the predicted conditional mass function (CMF) of dark matter halos from two theoretical prescriptions against numerical N-body simulations, both in overdense and underdense regions and at different Eulerian scales ranging from 55 to 30h130\,h^{-1}\,Mpc. In particular, we consider in detail a locally-implemented rescaling of the unconditional mass function (UMF) already discussed in the literature, and also a generalization of the standard rescaling method described in the extended Press-Schechter formalism. First, we test the consistency of these two rescalings by verifying the normalization of the CMF at different scales, and showing that none of the proposed cases provides a normalized CMF. In order to satisfy the normalization condition, we include a modification in the rescaling procedure. After this modification, the resulting CMF generally provides a better description of numerical results. We finally present an analytical fit to the ratio between the CMF and the UMF (also known as the matter-to-halo bias function) in underdense regions, which could be of special interest to speed-up the computation of the halo abundance when studying void statistics. In this case, the CMF prescription based on the locally-implemented rescaling provides a slightly better description of the numerical results when compared to the standard rescaling.

Cite

@article{arxiv.1702.01788,
  title  = {Testing the conditional mass function of dark matter halos against numerical N-body simulations},
  author = {D. Tramonte and J. A. Rubiño-Martín and J. Betancort-Rijo and C. Dalla Vecchia},
  journal= {arXiv preprint arXiv:1702.01788},
  year   = {2017}
}

Comments

20 pages, 13 figures. Accepted for publication in MNRAS

R2 v1 2026-06-22T18:10:51.296Z