Abstract
Abstract
We consider the possibility that the weakly interacting massive particles produced from
the evaporation of primordial black hole can explain both the relic density of dark matter and the
baryon asymmetry of the Universe, through their annihilation which violate B and CP-symmetry. We
find that the primordial black hole with mass less than 107g is a good candidate as an
source of TeV dark matter with the total annihilation cross section
〈σaυ〉 ≲ 10-7 GeV-2 and the B-violating scattering cross
section 〈σaυ〉 ≲ 2 × 10-9 GeV-2.
This large annihilation cross section of dark matter in this model would make it available to
search them in the indirect search for dark matter such as gamma-ray or neutrino observations.
Cited by
2 articles.
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