Probing Non-Minimal Dark Sectors via the 21 cm Line at Cosmic Dawn
arXiv:2507.10664 · doi:10.1088/1475-7516/2026/02/020
Abstract
Observations of the hydrogen hyperfine transition through the 21 cm line near the end of the cosmic dark ages provide unique opportunities to probe new physics. In this work, we investigate the potential of the sky-averaged 21 cm signal to constrain metastable particles produced in the early universe that decay at later times, thereby modifying the thermal and ionization history of the intergalactic medium. The study begins by extending previous analyses of decaying dark matter (DM), incorporating back-reaction effects and tightening photon decay constraints down to DM masses as low as 20.4 eV. The focus then shifts to non-minimal dark sectors with multiple interacting components. The analysis covers two key scenarios: a hybrid setup comprising a stable cold DM component alongside a metastable sub-component, and a two-component dark sector of nearly degenerate states with a metastable heavier partner. A general parameterization based on effective mass spectra and fractional densities allows for a model-independent study. The final part presents two explicit realizations: an axion-like particle coupled to photons, and pseudo-Dirac DM interacting via vector portals or electromagnetic dipoles. These scenarios illustrate how 21 cm cosmology can set leading bounds and probe otherwise inaccessible regions of parameter space.
49 pages, 14 figures, 1 table
References in corpus (40)
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Dark Matter Candidates from Particle Physics and Methods of Detection
- CMB Constraints on WIMP Annihilation: Energy Absorption During the Recombination Epoch
- General Constraints on Dark Matter Decay from the Cosmic Microwave Background
- Cosmological constraints on exotic injection of electromagnetic energy
- Making dark matter out of light: freeze-in from plasma effects
- New Constraints on Sterile Neutrino Dark Matter from M31 Observations
- A deep search for decaying dark matter with XMM-Newton blank-sky observations
- How well do we understand cosmological recombination?
- Constraining primordial black holes as dark matter using the global 21-cm signal with X-ray heating and excess radio background
- Cosmological hydrogen recombination: populations of the high level sub-states
- The Irreducible Axion Background
- Long-Exposure NuSTAR Constraints on Decaying Dark Matter in the Galactic Halo
- Spectral distortion constraints on photon injection from low-mass decaying particles
- Lower Mass Bounds on FIMP Dark Matter Produced via Freeze-In
- Unveiling the nature of dark matter with high redshift 21 cm line experiments
- The cosmology of sub-MeV dark matter freeze-in
- Strong constraints on decay and annihilation of dark matter from heating of gas-rich dwarf galaxies
- The nature of dark matter from the global high redshift HI 21 cm signal
- Spin Exchange Rates in Electron-Hydrogen Collisions
- Thermal axion production at low temperatures: a smooth treatment of the QCD phase transition
- Thermal QCD Axions across Thresholds
- Novel cosmological bounds on thermally-produced axion-like particles
- Fuzzy Dark Matter and the 21cm Power Spectrum
- An Effective Model for the Cosmic-Dawn 21-cm Signal
- Lyman- Constraints on Cosmic Heating from Dark Matter Annihilation and Decay
- Les Houches Lectures on Indirect Detection of Dark Matter
- Probing the Milky Way's Dark Matter Halo for the 3.5 keV Line
- Strong Optimized Conservative Fermi-LAT Constraints on Dark Matter Models from the Inclusive Photon Spectrum
- Antenna beam characterisation for the global 21cm experiment LEDA and its impact on signal model parameter reconstruction
- THESEUS Insights into ALP, Dark Photon and Sterile Neutrino Dark Matter
- CMB and Lyman- constraints on dark matter decays to photons
- 21cm signal sensitivity to dark matter decay
- A Search for Dark Matter Lines at the Galactic Center with 14 Years of Fermi Data
- Dark Matter Candidates and Searches
- Current constraints on cosmological scenarios with very low reheating temperatures
- Novel bounds on decaying axionlike particle dark matter from the cosmic background
- Dark Radiation from the Primordial Thermal Bath in Momentum Space
- Dark Matter Freeze-In and Small-Scale Observables: Novel Mass Bounds and Viable Particle Candidates
- Constraints on freeze-in dark matter from Lyman- forest and 21-cm signal : single-field models