Hidden Sector Dark Matter and the Galactic Center Gamma-Ray Excess: A Closer Look
arXiv:1709.07002 · doi:10.1088/1475-7516/2017/11/042
Abstract
Stringent constraints from direct detection experiments and the Large Hadron Collider motivate us to consider models in which the dark matter does not directly couple to the Standard Model, but that instead annihilates into hidden sector particles which ultimately decay through small couplings to the Standard Model. We calculate the gamma-ray emission generated within the context of several such hidden sector models, including those in which the hidden sector couples to the Standard Model through the vector portal (kinetic mixing with Standard Model hypercharge), through the Higgs portal (mixing with the Standard Model Higgs boson), or both. In each case, we identify broad regions of parameter space in which the observed spectrum and intensity of the Galactic Center gamma-ray excess can easily be accommodated, while providing an acceptable thermal relic abundance and remaining consistent with all current constraints. We also point out that cosmic-ray antiproton measurements could potentially discriminate some hidden sector models from more conventional dark matter scenarios.
v2: Published Version. Added references and text, and modified Figure 1. Conclusions unchanged. v1: 28 pages, 35 figures
Cited by in corpus (12)
- Scrutinizing the evidence for dark matter in cosmic-ray antiprotons
- Multimessenger constraints on the dark matter interpretation of the Fermi-LAT Galactic center excess
- Electromagnetic Signatures of Dark Photon Superradiance
- Evidence of TeV Halos Around Millisecond Pulsars
- Search for U(1) charged Dark Matter with neutrino telescope
- Composite Dark Matter from Strongly-Interacting Chiral Dynamics
- Decay of Boson Stars with Application to Glueballs and Other Real Scalars
- Simple Hidden Sector Dark Matter
- Thermal Relic of Self-Interacting Dark Matter with Retarded Decay of Mediator
- Indirect Detection of Secluded Supersymmetric Dark Matter
- When Freeze-out occurs due to a non-Boltzmann suppression: A study of degenerate dark sector
- Prospects for the detection of Dark Matter with Long-lived Mediators in the Sun using the Southern Wide-field Gamma-ray Observatory