The Cosmology of Sub-MeV Dark Matter
arXiv:1701.08750 · doi:10.1007/JHEP10(2017)013
Abstract
Light dark matter is a compelling experimental target in light of stringent constraints on heavier WIMPs. However, for a sub-MeV WIMP, the universe is sufficiently well understood at temperatures below 10 MeV that there is no room for it to be a thermal relic. Avoiding thermalization is itself a strong constraint with significant implications for direct detection. In this paper, we explore the space of models of sub-MeV dark matter with viable cosmologies. The parameter space of these models that is also consistent with astrophysical and lab-based limits is highly restricted for couplings to electrons but somewhat less constrained for nuclei. We find that achieving nuclear cross-sections well-above the neutrino floor necessarily predicts a new contribution to the effective number of neutrino species, that will be tested by the next generation of CMB observations. On the other hand, models with absorption signatures of dark matter are less restricted by cosmology even with future observations.
24 pages, 5 figures; V2: figures corrected, minor changes; V3: additional stellar cooling constraint included
References in corpus (17)
- Results from a search for dark matter in the complete LUX exposure
- Dark Matter Results from 225 Live Days of XENON100 Data
- Dark Matter Results from First 98.7-day Data of PandaX-II Experiment
- The Tevatron at the Frontier of Dark Matter Direct Detection
- LEP Shines Light on Dark Matter
- General Constraints on Dark Matter Decay from the Cosmic Microwave Background
- Semiconductor Probes of Light Dark Matter
- Absorption of light dark matter in semiconductors
- A New Flavor of Searches for Axion-Like Particles
- On the Detectability of Light Dark Matter with Superfluid Helium
- Searching for Dark Absorption with Direct Detection Experiments
- A New Target for Cosmic Axion Searches
- Direct Detection of sub-GeV Dark Matter with Scintillating Targets
- Detecting Ultralight Bosonic Dark Matter via Absorption in Superconductors
- BBN And The CMB Constrain Neutrino Coupled Light WIMPs
- Solar and Atmospheric Neutrinos: Background Sources for the Direct Dark Matter Searches
- Detection of sub-GeV Dark Matter and Solar Neutrinos via Chemical-Bond Breaking
Cited by in corpus (45)
- Light Dark Matter: Models and Constraints
- Making dark matter out of light: freeze-in from plasma effects
- Directional Detection of Light Dark Matter with Polar Materials
- Dirac Materials for Sub-MeV Dark Matter Detection: New Targets and Improved Formalism
- Thermal Dark Matter Below an MeV
- Detecting Light Dark Matter with Magnons
- Direct detection and complementary constraints for sub-GeV dark matter
- Searches for light dark matter using condensed matter systems
- Strong constraints on decay and annihilation of dark matter from heating of gas-rich dwarf galaxies
- Atmospheric Dark Matter and Xenon1T Excess
- The cosmology of sub-MeV dark matter freeze-in
- Detecting Dark Blobs
- A Thermal Neutrino Portal to Sub-MeV Dark Matter
- Direct Detection of Spin-(In)dependent Nuclear Scattering of Sub-GeV Dark Matter Using Molecular Excitations
- Joint CMB and BBN Constraints on Light Dark Sectors with Dark Radiation
- Multiphonon excitations from dark matter scattering in crystals
- Light(ly)-coupled Dark Matter in the keV Range: Freeze-In and Constraints
- Dark Sector Equilibration During Nucleosynthesis
- The Dark Matter Phonon Coupling
- Light Dark Matter from Leptogenesis
- Exclusion limits on Dark Matter-Neutrino Scattering Cross-section
- Light Dark Matter from Entropy Dilution
- First search for the absorption of fermionic dark matter with the PandaX-4T experiment
- Dark Matter Interactions, Helium, and the CMB
- Ultra-Heavy Dark Matter Search with Electron Microscopy of Geological Quartz
- Exploring the ultra-light to sub-MeV dark matter window with atomic clocks and co-magnetometers
- Revisiting the Fermionic Dark Matter Absorption on Electron Target
- Constraints on Dark Matter-Baryon Scattering from the Temperature Evolution of the Intergalactic Medium
- Towards a full description of MeV dark matter decoupling: a self-consistent determination of relic abundance and
- Core formation from self-heating dark matter
- Directional detection of light dark matter from three-phonon events in superfluid He
- Optimal anti-ferromagnets for light dark matter detection
- The GAmmas from Nuclear Decays Hiding from Investigators (GANDHI) Experiment
- Cosmology and prospects for sub-MeV dark matter in electron recoil experiments
- FIMP Dark Matter Freeze-in Gauge Mediation and Hidden Sector
- Sub-MeV Self Interacting Dark Matter
- Pathfinder for a High Statistics Search for Missing Energy In Gamma Cascades
- Axion-Like Particles at future collider
- "Non-Local" Effects from Boosted Dark Matter in Indirect Detection
- Light Dark Matter and Superfluid He-4 from EFT
- 21 cm cosmology and spin temperature reduction via spin-dependent dark matter interactions
- Positronium Decays with Dark and Fermionic Dark Matter
- Incoherent Fermionic Dark Matter Absorption with Nucleon Fermi Motion
- New Limits on Light Dark Matter-Nucleon Scattering
- Search for Dark Matter Annihilation and Decay with H Line Emission