Dark Gamma Ray Bursts
arXiv:1607.04278 · doi:10.1103/PhysRevD.95.055031
Abstract
Many theories of dark matter (DM) predict that DM particles can be captured by stars via scattering on ordinary matter. They subsequently condense into a DM core close to the center of the star and eventually annihilate. In this work, we trace DM capture and annihilation rates throughout the life of a massive star and show that this evolution culminates in an intense annihilation burst coincident with the death of the star in a core collapse supernova. The reason is that, along with the stellar interior, also its DM core heats up and contracts, so that the DM density increases rapidly during the final stages of stellar evolution. We argue that, counterintuitively, the annihilation burst is more intense if DM annihilation is a -wave process than for -wave annihilation because in the former case, more DM particles survive until the supernova. If among the DM annihilation products are particles like dark photons that can escape the exploding star and decay to Standard Model particles later, the annihilation burst results in a flash of gamma rays accompanying the supernova. For a galactic supernova, this "dark gamma ray burst" may be observable in CTA.
6 pages, 5 figures. v2: minor changes, matches Journal version
References in corpus (19)
- Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation
- Nucleosynthesis and Remnants in Massive Stars of Solar Metallicity
- LEP Shines Light on Dark Matter
- Evidence for dark matter in the inner Milky Way
- High-Energy Neutrinos From Dark Matter Particle Self-Capture Within the Sun
- Constraints on Light Dark Matter From Core-Collapse Supernovae
- A Supersymmetric U(1)' Model with Multiple Dark Matters
- Enhanced neutrino signals from dark matter annihilation in the Sun via metastable mediators
- Capture of Inelastic Dark Matter in the Sun
- A New Direction in Dark-Matter Complementarity: Dark-Matter Decay as a Complementary Probe of Multi-Component Dark Sectors
- Dirac dark matter with a charged mediator: a comprehensive one-loop analysis of the direct detection phenomenology
- Probing Dark Matter Self-Interaction in the Sun with IceCube-PINGU
- Effective field theory interpretation of searches for dark matter annihilation in the Sun with the IceCube Neutrino Observatory
- Classical scattering in strongly attractive potentials
- Updated constraints on velocity and momentum-dependent asymmetric dark matter
- Detecting Asymmetric Dark Matter in the Sun with Neutrinos
- Bremsstrahlung signatures of dark matter annihilation in the Sun
- A novel method to extract dark matter parameters from neutrino telescope data
- Implications Of A Dark Sector U(1) For Gamma Ray Bursts
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- Modeling the black holes surrounded by a dark matter halo in the galactic center of M87
- Capture rate of weakly interacting massive particles (WIMPs) in binary star systems