Asymmetric thermal-relic dark matter: Sommerfeld-enhanced freeze-out, annihilation signals and unitarity bounds
arXiv:1703.00478 · doi:10.1088/1475-7516/2017/09/028
Abstract
Dark matter that possesses a particle-antiparticle asymmetry and has thermalised in the early universe, requires a larger annihilation cross-section compared to symmetric dark matter, in order to deplete the dark antiparticles and account for the observed dark matter density. The annihilation cross-section determines the residual symmetric component of dark matter, which may give rise to annihilation signals during CMB and inside haloes today. We consider dark matter with long-range interactions, in particular dark matter coupled to a light vector or scalar force mediator. We compute the couplings required to attain a final antiparticle-to-particle ratio after the thermal freeze-out of the annihilation processes in the early universe, and then estimate the late-time annihilation signals. We show that, due to the Sommerfeld enhancement, highly asymmetric dark matter with long-range interactions can have a significant annihilation rate, potentially larger than symmetric dark matter of the same mass with contact interactions. We discuss caveats in this estimation, relating to the formation of stable bound states. Finally, we consider the non-relativistic partial-wave unitarity bound on the inelastic cross-section, we discuss why it can be realised only by long-range interactions, and showcase the importance of higher partial waves in this regime of large inelasticity. We derive upper bounds on the mass of symmetric and asymmetric thermal-relic dark matter for s-wave and p-wave annihilation, and exhibit how these bounds strengthen as the dark asymmetry increases.
31 pages, 8 figures. V2: small corrections, added discussion and references
References in corpus (20)
- A Theory of Dark Matter
- Unveiling secrets with cosmological data: neutrino masses and mass hierarchy
- Probing a Secluded U(1) at B-factories
- Bound-state formation for thermal relic dark matter and unitarity
- Strong constraints on self-interacting dark matter with light mediators
- Constraints on Bosonic Dark Matter From Observations of Old Neutron Stars
- Dark Matter's secret liaisons: phenomenology of a dark U(1) sector with bound states
- Dark-matter bound states from Feynman diagrams
- Hidden Sector Hydrogen as Dark Matter: Small-scale Structure Formation Predictions and the Importance of Hyperfine Interactions
- The number density of a charged relic
- Enhanced neutrino signals from dark matter annihilation in the Sun via metastable mediators
- Effects of QCD bound states on dark matter relic abundance
- 3.5 keV X-rays as the "21 cm line" of dark atoms, and a link to light sterile neutrinos
- Superheavy Thermal Dark Matter and Primordial Asymmetries
- First asteroseismic limits on the nature of dark matter
- Dark Catalysis
- Annihilating Asymmetric Dark Matter
- Particle-antiparticle asymmetries from annihilations
- Signals from dark atom formation in halos
- Constraining Secluded Dark Matter models with the public data from the 79-string IceCube search for dark matter in the Sun
Cited by in corpus (49)
- GeV-Scale Thermal WIMPs: Not Even Slightly Dead
- Filtered Dark Matter at a First Order Phase Transition
- Strong gravitational radiation from a simple dark matter model
- TeV-Scale Thermal WIMPs: Unitarity and its Consequences
- Homeopathic Dark Matter, or how diluted heavy substances produce high energy cosmic rays
- Asymmetric dark matter: residual annihilations and self-interactions
- Super heavy thermal dark matter
- Neutrino experiments probe hadrophilic light dark matter
- Constraints on Spin-Dependent Dark Matter Scattering with Long-Lived Mediators from TeV Observations of the Sun with HAWC
- A Combined Astrophysical and Dark Matter Interpretation of the IceCube HESE and Throughgoing Muon Events
- Snowmass2021 Cosmic Frontier White Paper: Ultraheavy particle dark matter
- Reannihilation of self-interacting dark matter
- Non-Abelian Electric Field Correlator at NLO for Dark Matter Relic Abundance and Quarkonium Transport
- Dark Matter Sommerfeld-enhanced annihilation and Bound-state decay at finite temperature
- Composite Asymmetric Dark Matter with a Dark Photon Portal
- Higgs Enhancement for the Dark Matter Relic Density
- Filtered pseudo-scalar dark matter and gravitational waves from first order phase transition
- Precise dark matter relic abundance in decoupled sectors
- Rapid bound-state formation of Dark Matter in the Early Universe
- Primordial Black Hole Dark Matter evaporating on the Neutrino Floor
- A Reappraisal on Dark Matter Co-annihilating with a Top/Bottom Partner
- Gravitational Baryogenesis and Dark Matter from Light Black Holes
- Dark Matter Bound State Formation in Fermionic DM model with Light Dark Photon and Dark Higgs Boson
- Point Sources from Dissipative Dark Matter
- Accelerating Earth-Bound Dark Matter
- Dark matter bound state formation via emission of a charged scalar
- Excited bound states and their role in dark matter production
- Constraining decaying very heavy dark matter from galaxy clusters with 14 year Fermi-LAT data
- Indirect searches for dark matter bound state formation and level transitions
- Saha equilibrium for metastable bound states and dark matter freeze-out
- Current and future gamma-ray searches for dark-matter annihilation beyond the unitarity limit
- Neutrino mass and asymmetric dark matter: study with inert Higgs doublet and high scale validity
- Unitarity Bound on Dark Matter in Low-temperature Reheating Scenarios
- Asymmetric dark matter with a spontaneously broken : self-interaction and gravitational waves
- Active learning BSM parameter spaces
- Bound-state formation, dissociation and decays of darkonium with potential non-relativistic Yukawa theory for scalar and pseudoscalar mediators
- Search for heavy dark matter from dwarf spheroidal galaxies: leveraging cascades and subhalo models
- How heavy can dark matter be? Constraining colourful unitarity with SARAH
- Forays into the dark side of the swamp
- Unitarity in the non-relativistic regime and implications for dark matter
- Thermodynamics of the Primordial Universe
- The role of unitarisation on dark-matter freeze-out via metastable bound states
- Coronal heating problem solution by means of axion origin photons
- Relic Density of Asymmetric Dark Matter with Sommerfeld enhancement
- Decoupling of Asymmetric Dark Matter During an Early Matter Dominated Era
- Radiation back-reaction during dark-matter freeze-out via metastable bound states
- Baryogenesis via relativistic bubble expansion
- Two-component asymmetric dark matter via bound states and freeze-in decay
- Cogenesis of visible and dark matter in type-I Dirac seesaw