English

JWST constraints on the UV luminosity density at cosmic dawn: implications for 21-cm cosmology

Cosmology and Nongalactic Astrophysics 2023-10-13 v2 Astrophysics of Galaxies

Abstract

An unprecedented array of new observational capabilities are starting to yield key constraints on models of the epoch of first light in the Universe. In this Letter we discuss the implications of the UV radiation background at cosmic dawn inferred by recent JWST observations for radio experiments aimed at detecting the redshifted 21-cm hyperfine transition of diffuse neutral hydrogen. Under the basic assumption that the 21-cm signal is activated by the Lyα\alpha photon field produced by metal-poor stellar systems, we show that a detection at the low frequencies of the EDGES and SARAS3 experiments may be expected from a simple extrapolation of the declining UV luminosity density inferred at z14z\lesssim 14 from JWST early galaxy data. Accounting for an early radiation excess above the CMB suggests a shallower or flat evolution to simultaneously reproduce low and high-zz current UV luminosity density constraints, which cannot be entirely ruled out, given the large uncertainties from cosmic variance and the faint-end slope of the galaxy luminosity function at cosmic dawn. Our findings raise the intriguing possibility that a high star formation efficiency at early times may trigger the onset of intense Lyα\alpha emission at redshift z20z\lesssim 20 and produce a cosmic 21-cm absorption signal 200 Myr after the Big Bang.

Keywords

Cite

@article{arxiv.2305.02703,
  title  = {JWST constraints on the UV luminosity density at cosmic dawn: implications for 21-cm cosmology},
  author = {Sultan Hassan and Christopher C. Lovell and Piero Madau and Marc Huertas-Company and Rachel S. Somerville and Blakesley Burkhart and Keri L. Dixon and Robert Feldmann and Tjitske K. Starkenburg and John F. Wu and Christian Kragh Jespersen and Joseph D. Gelfand and Ankita Bera},
  journal= {arXiv preprint arXiv:2305.02703},
  year   = {2023}
}

Comments

8 pages, 3 figures, accepted to ApJL