The Copernicus Complexio: Statistical properties of warm dark matter haloes

Open Access
Authors
  • S. Bose
  • W.A. Hellwing
  • C.S. Frenk
  • A. Jenkins
  • M.R. Lovell
  • J.C. Helly
  • B. Li
Publication date 01-01-2016
Journal Monthly Notices of the Royal Astronomical Society
Volume | Issue number 455 | 1
Pages (from-to) 318-333
Number of pages 16
Organisations
  • Faculty of Science (FNWI)
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
Abstract
The recent detection of a 3.5 keV X-ray line from the centres of galaxies and clusters by Bulbul et al. and Boyarsky et al. has been interpreted as emission from the decay of 7 keV sterile neutrinos which could make up the (warm) dark matter (WDM). As part of the Copernicus Complexio (coco) programme, we investigate the properties of dark matter haloes formed in a high-resolution cosmological N-body simulation from initial conditions similar to those expected in a universe in which the dark matter consists of 7 keV sterile neutrinos. This simulation and its cold dark matter (CDM) counterpart have ∼13.4 bn particles, each of mass ∼105 h−1 M⊙, providing detailed information about halo structure and evolution down to dwarf galaxy mass scales. Non-linear structure formation on small scales (M200 ≲ 2 × 109 h−1 M⊙) begins slightly later in coco-warm than in coco-cold. The halo mass function at the present day in the WDM model begins to drop below its CDM counterpart at a mass ∼2 × 109 h−1 M⊙ and declines very rapidly towards lower masses so that there are five times fewer haloes of mass M200 = 108 h−1 M⊙ in coco-warm than in coco-cold. Halo concentrations on dwarf galaxy scales are correspondingly smaller in coco-warm, and we provide a simple functional form that describes its evolution with redshift. The shapes of haloes are similar in the two cases, but the smallest haloes in coco-warm rotate slightly more slowly than their CDM counterparts.
Document type Article
Note This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society © 2015 The Author(s) published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.
Language English
Published at
https://doi.org/10.1093/mnras/stv2294 (Final published version)
Published at
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stv2294 (Final published version)
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