Simulating the complexity of the dark matter sheet II: halo and subhalo mass functions for non-cold dark matter models
arXiv:2109.09760 · doi:10.1093/mnras/stab3078
Abstract
We present "sheet+release" simulations that reliably follow the evolution of dark matter structure at and below the dark matter free-streaming scale, where instabilities in traditional N-body simulations create a large population of spurious artificial haloes. Our simulations sample a large range of power-spectrum cutoff functions, parameterized through the half-mode scale and a slope parameter . This parameter space can represent many non-cold dark matter models, including thermal relic warm dark matter, sterile-neutrinos, fuzzy dark matter, and a significant fraction of ETHOS models. Combining these simulations with additional N-body simulations, we find the following results. (1) Even after eliminating spurious haloes, the halo mass function in the strongly suppressed regime () remains uncertain because it depends strongly on the definition of a halo. At these mass scales traditional halo finders primarily identify overdensities that are unbound, highly elongated, dominated by tidal fields, or far from virialized. (2) The regime where the suppression is smaller than a factor of 20 is quite robust to these uncertainties, however, and can be inferred reliably from suitable N-body simulations. (3) Parameterizing the suppression in the halo- and subhalo mass functions through the scales where the suppression reaches , and , we provide simple formulae which enable predictions for many non-cold dark matter models. (4) The halo mass-concentration relations in our sheet+release simulations agree well with previous results based on N-body simulations. (5) In general, we confirm the validity of previous N-body studies of warm dark matter models, largely eliminating concerns about the effects of artificial haloes.
17 pages, 15 figures, submitted to MNRAS, for extra material see https://bacco.dipc.org/ncdm.html
References in corpus (14)
- Warm dark matter chills out: constraints on the halo mass function and the free-streaming length of dark matter with 8 quadruple-image strong gravitational lenses
- Discreteness effects in simulations of Hot/Warm dark matter
- Inference of the Cold Dark Matter substructure mass function at z=0.2 using strong gravitational lenses
- Small-scale structure of fuzzy and axion-like dark matter
- Novel constraints on the particle nature of dark matter from stellar streams
- Joint constraints on thermal relic dark matter from strong gravitational lensing, the Lyman- forest, and Milky Way satellites
- Towards a general parametrization of the warm dark matter halo mass function
- Phase-space structure of protohalos: Vlasov versus Particle-Mesh
- Dark Matter Caustics
- Simulating the Complexity of the Dark Matter Sheet I: Numerical Algorithms
- The halo mass function and inner structure of ETHOS haloes at high redshift
- Structural properties of artificial halos in non-standard dark matter simulations
- Non-Halo Structures and their Effects on Gravitational Lensing
- The Boosted Potential