Constraining the non-gravitational scattering of baryons and dark matter with early cosmic structure formation
arXiv:1902.09650 · doi:10.1093/mnras/stz1583
Abstract
We derive new constraints on the non-gravitational baryon-dark-matter scattering (BDMS) by evaluating the mass thresholds of dark matter (DM) haloes in which primordial gas can cool efficiently to form Population III (Pop III) stars, based on the timing of the observed 21-cm absorption signal. We focus on the BDMS model with interaction cross-section , where is the relative velocity of the encounter. Our results rule out the region in parameter space with and DM particle mass , where the cosmic number density of Pop III hosts at redshift is at least three orders of magnitude smaller than in the standard Lambda cold DM (CDM) case. In these BDMS models, the formation of Pop III stars is significantly suppressed for , inconsistent with the timing of the observed global 21-cm absorption signal. For the fiducial BDMS model with GeV and , capable of accommodating the measured absorption depth, the number density of Pop III hosts is reduced by a factor of at , when the 21-cm signal is imprinted, compared with the CDM model. The confluence of future detailed cosmological simulations with improved 21-cm observations promises to probe the particle-physics nature of DM at the small-scale frontier of early structure formation.
11 pages, 9 figures, accepted for publication in MNRAS, added comments on the ideal gas approximation and constraints on millicharged DM
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- Starbursts in low-mass haloes at Cosmic Dawn. I. The critical halo mass for star formation
- Effects of stellar-mass primordial black holes on first star formation
- Implications of inhomogeneous metal mixing for stellar archaeology
- Rapidly rotating Population III stellar models as a source of primary nitrogen
- Gravitational waves from mergers of Population III binary black holes: roles played by two evolution channels
- Astrophysical information from the Rayleigh-Jeans Tail of the CMB