Interacting light thermal-relic dark matter: self-consistent cosmological bounds
arXiv:2402.14223 · doi:10.1103/PhysRevD.109.123522
Abstract
We analyze cosmic microwave background (CMB) data to constrain the mass and interaction strengths of thermally-produced dark matter (DM) in a self-consistent manner, simultaneously taking into account the cosmological effects of its mass and interactions. The presence of a light thermal-relic particle contributes non-negligibly to the radiation density during Big Bang Nucleosynthesis (BBN), altering the light-element yields, as well as the the effective number of relativistic particle species. On the other hand, DM interactions with the Standard Model can affect distribution of matter in later universe. Both mass and interactions alter CMB anisotropy on sub-degree scales. To understand and quantify the interplay of these effects, we consider elastic DM-baryon scattering with a momentum-transfer cross section that scales as a power law of the relative velocity between the scattering particles. In the range of thermal-relic DM masses relevant for BBN ( 20 MeV), we find that the reconstruction of the DM mass and the scattering cross section from the CMB data features strong degeneracies; modeling the two effects simultaneously increases the sensitivity of the CMB measurements to both fundamental properties of DM. Additionally, we study the effects of late-time residual annihilation of a light thermal relic and provide improved CMB constraints on the DM mass and annihilation cross section. To examine degeneracy between DM mass, cross section for elastic scattering with baryons, and annihilation cross section, we consider a specific case of DM with an electric and magnetic dipole moments. We present new, self-consistent cosmological bounds for this model and discuss implications for future searches.
16 pages, 10 figures, comments are welcome
References in corpus (13)
- A direct empirical proof of the existence of dark matter
- Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation
- Asymmetric Dark Matter
- CMB Constraints on WIMP Annihilation: Energy Absorption During the Recombination Epoch
- Light Dark Matter: Models and Constraints
- A precision calculation of relic neutrino decoupling
- Refined Bounds on MeV-scale Thermal Dark Sectors from BBN and the CMB
- BBN And The CMB Constrain Neutrino Coupled Light WIMPs
- The Effects of Dark Matter-Baryon Scattering on Redshifted 21 cm Signals
- Joint CMB and BBN Constraints on Light Dark Sectors with Dark Radiation
- Testing dark matter interactions with CMB spectral distortions
- Primordial Helium Abundance from CMB: a constraint from recent observations and a forecast
- What does cosmology tell us about the mass of thermal-relic dark matter?