Cosmic Microwave Background constraints of decaying dark matter particle properties
arXiv:1206.4114 · doi:10.1088/0004-637X/755/2/108
Abstract
If a component of cosmological dark matter is made up of massive particles - such as sterile neutrinos - that decay with cosmological lifetime to emit photons, the reionization history of the universe would be affected, and cosmic microwave background anisotropies can be used to constrain such a decaying particle model of dark matter. The optical depth depends rather sensitively on the decaying dark matter particle mass m_{dm}, lifetime tau_{dm}, and the mass fraction of cold dark matter f that they account for in this model. Assuming that there are no other sources of reionization and using the WMAP 7-year data, we find that 250 eV < m_{dm} < 1 MeV, whereas 2.23*10^3 yr < tau_{dm} < 1.23*10^18 yr. The best fit values for m_{dm} and tau_{dm}/f are 17.3 keV and 2.03*10^16 yr respectively.
17 pages, 3 figures
References in corpus (4)
Cited by in corpus (6)
- CMB photons shedding light on dark matter
- Improved Limits on Sterile Neutrino Dark Matter using Full-Sky Fermi Gamma-Ray Burst Monitor Data
- Do you smell something decaying? Updated linear constraints on decaying dark matter scenarios
- Nonabelian dark matter models for 3.5 keV X-rays
- Reionization and dark matter decay
- Cosmic Microwave Background Constraints on Dark Matter Models of the Galactic Center 511 keV Signal