What does cosmology tell us about the mass of thermal-relic dark matter?
arXiv:2202.03515 · doi:10.1088/1475-7516/2022/07/002
Abstract
The presence of light thermally coupled dark matter affects early expansion history and production of light elements during the Big Bang Nucleosynthesis. Specifically, dark matter that annihilates into Standard Model particles can modify the effective number of light species in the universe , as well as the abundance of light elements created buring BBN. These quantities in turn affect the cosmic microwave background (CMB) anisotropy. We present the first joint analysis of small-scale temperature and polarization CMB anisotropy from Atacama Cosmology Telescope (ACT) and South Pole Telescope (SPT), together with Planck data and the recent primordial abundance measurements of helium and deuterium to place comprehensive bounds on the mass of light thermal-relic dark matter. We consider a range of models, including dark matter that couples to photons and Standard-Model neutrinos. We find that the combination of ACT, SPT, and Planck generally leads to the most stringent mass constraint for dark matter that couples to neutrinos, improving the lower limit by 40%-80%, with respect to previous Planck analyses. On the other hand, the addition of ACT and SPT leads to a slightly weaker bound on electromagnetically coupled particles, due to a shift in the preferred values of and driven by the ground based experiments. Combining all CMB measurements with primordial abundance measurements, we rule out masses below 4 MeV at 95% confidence, for all models. We show that allowing for new relativistic species can weaken the mass bounds for dark matter that couples to photons by up to an order of magnitude or more. Finally, we discuss the reach of the next generation of the CMB experiments in terms of probing the mass of the thermal relic dark matter.
14 pages, 10 figures, accepted by JCAP
References in corpus (17)
- A direct empirical proof of the existence of dark matter
- Cobaya: Code for Bayesian Analysis of hierarchical physical models
- The Atacama Cosmology Telescope: DR4 Maps and Cosmological Parameters
- The Cosmic Linear Anisotropy Solving System (CLASS) I: Overview
- CMB-S4 Science Case, Reference Design, and Project Plan
- The WIMPless Miracle: Dark Matter Particles without Weak-scale Masses or Weak Interactions
- The Atacama Cosmology Telescope: A Measurement of the Cosmic Microwave Background Power Spectra at 98 and 150 GHz
- Measurements of the E-Mode Polarization and Temperature-E-Mode Correlation of the CMB from SPT-3G 2018 Data
- Dark Matter Evidence, Particle Physics Candidates and Detection Methods
- Refined Bounds on MeV-scale Thermal Dark Sectors from BBN and the CMB
- BBN And The CMB Constrain Neutrino Coupled Light WIMPs
- A Natural Supersymmetric Model with MeV Dark Matter
- The Atacama Cosmology Telescope: Constraints on Pre-Recombination Early Dark Energy
- A new tension in the cosmological model from primordial deuterium?
- BBN constraints on the annihilation of MeV-scale dark matter
- Constraints on CDM Extensions from the SPT-3G 2018 and Power Spectra
- MeV Dark Matter and Small Scale Structure
Cited by in corpus (18)
- Revealing the effects of curvature on the cosmological models
- Health checkup test of the standard cosmological model in view of recent Cosmic Microwave Background Anisotropies experiments
- Freezing-in hadrophilic dark matter at low reheating temperatures
- Self-Interacting Neutrinos in Light of Large-Scale Structure Data
- Quantifying the global "CMB tension" between the Atacama Cosmology Telescope and the Planck satellite in extended models of cosmology
- Tension in the Context of Dark Matter-Baryon Scattering
- Minimal Dark Matter Freeze-in with Low Reheating Temperatures and Implications for Direct Detection
- The Morphology of Exciting Dark Matter and the Galactic 511 keV Signal
- LINX: A Fast, Differentiable, and Extensible Big Bang Nucleosynthesis Package
- Bounds on Velocity-Dependent Dark Matter-Baryon Scattering from Large-Scale Structure
- Anticipating the XRISM search for the decay of resonantly produced sterile neutrino dark matter
- Imprints of MeV Scale Hidden Dark Sector at Planck Data
- Reconstructing the early-universe expansion and thermal history
- Cosmological Parameter Estimation with a Joint-Likelihood Analysis of the Cosmic Microwave Background and Big Bang Nucleosynthesis
- Interacting light thermal-relic dark matter: self-consistent cosmological bounds
- New Limits on Light Dark Matter-Nucleon Scattering
- CMB Constraints on Loop-Induced Decays of Leptophilic Dark Matter
- Investigating sub-MeV dark matter annihilation to neutrinos using direct detection experiments