arXiv · 2407.08225
Constraints on freeze-in dark matter from Lyman-$\alpha$ forest and 21-cm signal : single-field models
Abstract
We report new Lyman-$\alpha$ and 21-cm constraints on freeze-in dark matter (FIDM) which injects energy into the intergalactic medium either through annihilation or decay to photon(s) or electron-positron pair. With respect to Lyman-$\alpha$ we fix the baseline ionization history using low redshift data about astrophysical reionization, whereas for 21-cm signal we adopt the baseline values of 21-cm power spectrum through a standard modeling of star formation developed so far. Using the latest numerical tools, we show that (i) for sterile neutrino FIDM, current Lyman-$\alpha$ data and future sensitivity of SKA-low (1000 hrs) on the 21-cm power spectra excludes the FIDM mass up to $1.8\times 10^{-3}$ GeV at 95$\%$ CL and $5.46\times 10^{-4}$ GeV, respectively, and (ii) for millicharged FIDM, current Lyman-$\alpha$ data only excludes the millicharge down to $10^{-8}$ within the FIDM mass range of $10^{-3}-1$ GeV at 95$\%$ CL, suggesting that the surviving parameter space of millicharged FIDM is still intact.
Explore related subjects
Keep this discovery
Zixuan Xu, Quan Zhou, Sibo Zheng. 2024-07-11. Constraints on freeze-in dark matter from Lyman-$\alpha$ forest and 21-cm signal : single-field models. https://doi.org/10.1103/physrevd.110.115003
Cite the original work for its findings. Save a collection to share your selection of sources.