WIMPs Without Weakness: Generalized Mass Window with Entropy Injection
arXiv:2111.11444 · doi:10.1103/PhysRevD.106.015012
Abstract
We study general freeze-out scenarios where an arbitrary number of initial and final dark matter particles participate in the number-changing freeze-out interaction. We consider a simple sector with two particle species undergoing such a thermal freeze-out; one of the relics is stable and gives rise to the dark matter today, while the other one decays to the Standard Model, injecting significant entropy into the thermal bath that dilutes the dark matter abundance. We show that this setup can lead to a stable relic population that reproduces the observed dark matter abundance without requiring weak scale masses or couplings. The final dark matter abundance is estimated analytically. We carry out this calculation for arbitrary temperature dependence in the freeze-out process and identify the viable dark matter mass and cross section ranges that explain the observed dark matter abundance. This setup can be used to open parameter space for both heavy (above the unitarity bound) or light (sub-GeV) dark matter candidates. We point out that the best strategy for probing most parts of our parameter space is to look for signatures of an early matter-dominant epoch.
9 pages and technical appendices
References in corpus (31)
- A Theory of Dark Matter
- Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation
- Cosmology and Astrophysics of Minimal Dark Matter
- Search for a dark photon in e+e- collisions at BABAR
- Non-perturbative Effect on Thermal Relic Abundance of Dark Matter
- Big Bang Nucleosynthesis Constraints on Hadronically and Electromagnetically Decaying Relic Neutral Particles
- Light Dark Matter: Models and Constraints
- Projected WIMP Sensitivity of the XENONnT Dark Matter Experiment
- Unbroken B-L Symmetry
- Bound-state formation for thermal relic dark matter and unitarity
- Neutrino Backgrounds to Dark Matter Searches
- Refined Bounds on MeV-scale Thermal Dark Sectors from BBN and the CMB
- Thermal Dark Matter From A Highly Decoupled Sector
- Upper Bound on the Dark Matter Total Annihilation Cross Section
- BBN constraints on the annihilation of MeV-scale dark matter
- Gravitational Waves from Global Cosmic Strings and Cosmic Archaeology
- Co-SIMP Miracle
- Detection of sub-GeV Dark Matter and Solar Neutrinos via Chemical-Bond Breaking
- Causal gravitational waves as a probe of free streaming particles and the expansion of the Universe
- Directional Detection of Dark Matter using Spectroscopy of Crystal Defects
- Baryogenesis from Oscillations of Charmed or Beautiful Baryons
- Superheavy Thermal Dark Matter and Primordial Asymmetries
- Can Solar Neutrinos be a Serious Background in Direct Dark Matter Searches?
- Turn up the volume: Listening to phase transitions in hot dark sectors
- Breaking a dark degeneracy: The gamma-ray signature of early matter domination
- Precise dark matter relic abundance in decoupled sectors
- Dark Matter Daily Modulation With Anisotropic Organic Crystals
- Unitarity limits on thermal dark matter in (non-)standard cosmologies
- Non-thermal Dark Matter from Modified Early Matter Domination
- Smallest Remnants of Early Matter Domination
- From dwarf galaxies to galaxy clusters: Self-Interacting Dark Matter over 7 orders of magnitude in halo mass
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- Dark Matter Dilution Mechanism through the Lens of Large Scale Structure
- From WIMPs to FIMPs: Impact of Early Matter Domination
- Directional Detection of Dark Matter Using Solid-State Quantum Sensing
- Scalar Co-SIMP Dark Matter: Models and Sensitivities
- Dark Freeze-out Cogenesis
- EvoEMD: cosmic evolution with an early matter-dominated era
- Indirect searches for realistic sub-GeV Dark Matter models
- Imprints of an early matter-dominated era arising from dark matter dilution mechanism on cosmic string dynamics and gravitational wave signatures
- Baryon-baryon, meson-meson, and meson-baryon interactions in nonrelativistic QCD
- Fingerprints of freeze-in dark matter in an early matter-dominated era