4.7 Article

The Lyman-α forest as a diagnostic of the nature of the dark matter

Journal

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Volume 489, Issue 3, Pages 3456-3471

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stz2188

Keywords

methods: data analysis; intergalactic medium; quasars: absorption lines; dark matter; large-scale structure of Universe

Funding

  1. European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme (ERC Advanced Grant) [694896]
  2. Science andTechnology FacilitiesCouncil (STFC) [ST/P000541/1]
  3. European Research Council (ERC) through Advanced Investigator Grant DMIDAS [GA 786910]
  4. Carlsberg foundation
  5. BIS National E-infrastructure capital grant [ST/K00042X/1]
  6. STFC [ST/H008519/1, ST/K00087X/1]
  7. STFC DiRAC Operations grant [ST/K003267/1]
  8. Durham University
  9. STFC [ST/T001550/1, ST/T001348/1, ST/T001569/1, ST/R001014/1, ST/M006948/1, ST/M007073/1, ST/P000541/1, ST/R001006/1, ST/M007006/1, ST/M007065/1, ST/S002529/1, ST/T001372/1, ST/R00689X/1, ST/K00042X/1, ST/R000832/1, ST/M007618/1, ST/R001049/1] Funding Source: UKRI

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The observed Lyman-alpha flux power spectrum (FPS) is suppressed on scales below similar to 30 km s(-1). This cut-off could be due to the high temperature, T-0, and pressure, p(0), of the absorbing gas or, alternatively, it could reflect the free streaming of dark matter particles in the early universe. We perform a set of very high resolution cosmological hydrodynamic simulations in which we vary T-0, p(0), and the amplitude of the dark matter free streaming, and compare the FPS of mock spectra to the data. We show that the location of the dark matter free-streaming cut-off scales differently with redshift than the cut-off produced by thermal effects and is more pronounced at higher redshift. We, therefore, focus on a comparison to the observed FPS at z > 5. We demonstrate that the FPS cut-off can be fit assuming cold dark matter, but it can be equally well fit assuming that the dark matter consists of similar to 7 keV sterile neutrinos in which case the cut-off is due primarily to the dark matter free streaming.

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