Probing ultra-light axions with the 21-cm Signal during Cosmic Dawn
arXiv:2112.06943 · doi:10.1103/PhysRevD.106.043529
Abstract
Ultra-light axions (ULAs) are a promising and intriguing set of dark-matter candidates. We study the prospects to use forthcoming measurements of 21-cm fluctuations from cosmic dawn to probe ULAs. We focus in particular on the velocity acoustic oscillations (VAOs) in the large-scale 21-cm power spectrum, features imprinted by the long-wavelength () modulation, by dark-matter--baryon relative velocities, of the small-scale () power required to produce the stars that heat the neutral hydrogen. Damping of small-scale power by ULAs reduces the star-formation rate at cosmic dawn which then leads to a reduced VAO amplitude. Accounting for different assumptions for feedback and foregrounds, experiments like HERA may be sensitive to ULAs with masses up to , two decades of mass higher than current constraints.
version 2: Initial conditions improved, qualitative results unchanged, manuscript matches the published PRD version. version 1: 8 pages, 7 figures, comments welcome. Sec. II covers some pedagogical information similar to arXiv:2106.11979
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