The abundance of dark matter haloes down to Earth mass

Author:

Zheng Haonan123ORCID,Bose Sownak3ORCID,Frenk Carlos S3ORCID,Gao Liang1245ORCID,Jenkins Adrian3ORCID,Liao Shihong1ORCID,Liu Yizhou12ORCID,Wang Jie124

Affiliation:

1. Key Laboratory for Computational Astrophysics, National Astronomical Observatories, Chinese Academy of Sciences , Beijing 100101 , China

2. School of Astronomy and Space Science, University of Chinese Academy of Sciences , Beijing 100049 , China

3. Department of Physics, Institute for Computational Cosmology, University of Durham , South Road, Durham DH1 3LE , UK

4. Institute for Frontiers in Astronomy and Astrophysics, Beijing Normal University , Beijing 102206 , China

5. School of Physics and Microelectronics, Zhengzhou University , Zhengzhou 450001 , China

Abstract

ABSTRACT We use the voids-within-voids-within-voids (VVV) simulations, a suite of successive nested N-body simulations with extremely high resolution (denoted, from low to high resolution, by L0 to L7), to test the Press–Schechter (PS), Sheth–Tormen (ST), and extended Press–Schechter (EPS) formulae for the halo abundance over the entire mass range, from minihaloes of 10−6 M⊙, to cluster haloes of 1015 M⊙, at different redshifts, from z = 30 to the present. We find that at z = 0 and z = 2, ST best reproduces the results of L0, which has the mean cosmic density (overdensity δ = 0), at 1011−15 M⊙. The higher resolution levels (L1–L7) are biased underdense regions (δ < −0.6). The EPS formalism takes this into account since it gives the mass function of a region conditioned, in this case, on having a given underdensity. EPS provides good matches to these higher levels, with deviations ≲20 per cent, at 10−6−12.5 M⊙. At z ∼ 7−15, the ST predictions for L0 and the EPS for L1–L7 show somewhat larger deviations from the simulation results. However, at even higher redshifts, z ∼ 30, EPS fits the simulations well again. We confirm our results by picking more subvolumes from the L0 simulation, finding that our conclusions depend only weakly on the size and overdensity of the region. The good agreement of EPS with the higher level simulations implies that PS (or ST) gives an accurate description of the total halo mass function in representative regions of the universe.

Funder

National Natural Science Foundation of China

European Research Council

Ministry of Science and Technology

BEIS

STFC

Durham University

Publisher

Oxford University Press (OUP)

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The influence of baryons on low-mass haloes;Monthly Notices of the Royal Astronomical Society;2024-07-08

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