English

Bimodal Formation Time Distribution for Infall Dark Matter Halos

Cosmology and Nongalactic Astrophysics 2018-05-18 v2 Astrophysics of Galaxies

Abstract

We use a 200 h1Mpch^{-1}Mpc a side N-body simulation to study the mass accretion history (MAH) of dark matter halos to be accreted by larger halos, which we call infall halos. We define a quantity anf(1+zf)/(1+zpeak)a_{\rm nf}\equiv (1+z_{\rm f})/(1+z_{\rm peak}) to characterize the MAH of infall halos, where zpeakz_{\rm peak} and zfz_{\rm f} are the accretion and formation redshifts, respectively. We find that, at given zpeakz_{\rm peak}, their MAH is bimodal. Infall halos are dominated by a young population at high redshift and by an old population at low redshift. For the young population, the anfa_{\rm nf} distribution is narrow and peaks at about 1.21.2, independent of zpeakz_{\rm peak}, while for the old population, the peak position and width of the anfa_{\rm nf} distribution both increases with decreasing zpeakz_{\rm peak} and are both larger than those of the young population. This bimodal distribution is found to be closely connected to the two phases in the MAHs of halos. While members of the young population are still in the fast accretion phase at zpeakz_{\rm peak}, those of the old population have already entered the slow accretion phase at zpeakz_{\rm peak}. This bimodal distribution is not found for the whole halo population, nor is it seen in halo merger trees generated with the extended Press-Schechter formalism. The infall halo population at zpeakz_{\rm peak} are, on average, younger than the whole halo population of similar masses identified at the same redshift. We discuss the implications of our findings in connection to the bimodal color distribution of observed galaxies and to the link between central and satellite galaxies.

Keywords

Cite

@article{arxiv.1712.00324,
  title  = {Bimodal Formation Time Distribution for Infall Dark Matter Halos},
  author = {Jingjing Shi and Huiyuan Wang and H. J. Mo and Lizhi Xie and Xiaoyu Wang and Andrea Lapi and Ravi K. Sheth},
  journal= {arXiv preprint arXiv:1712.00324},
  year   = {2018}
}

Comments

21 pages, 7 figures, accepted for publication by ApJ

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