中文

Indirect detection of unstable heavy dark matter

高能物理 - 唯象学 2009-10-22 v1

摘要

Unstable relics with lifetime longer than the age of the Universe could be the dark matter today. Electrons, photons and neutrinos are a natural outcome of their decay and could be searched for in cosmic rays and in γ\gamma-ray and neutrino detectors. I compare the sensitivities of these three types of searches to the mass and lifetime of a generic unstable particle. I show that if the relics constitute our galactic halo and their branching ratios into electron-positrons, photons and neutrinos are comparable, neutrino searches would probe the longest lifetimes for masses \simge40\TeV\simge 40 \TeV, while electron-positron searches would be better but more uncertain for lighter particles. If instead the relics are not clustered in our halo, neutrinos are more sensitive a probe than γ\gamma-rays for masses \simge700\GeV\simge 700 \GeV. A 1\sqkm 1 \sqkm neutrino telescope should be able to explore lifetimes up to 1030sec \sim 10^{30} \sec while searching for neutrinos from unstable particles above the atmospheric background.

引用

@article{arxiv.hep-ph/9207261,
  title  = {Indirect detection of unstable heavy dark matter},
  author = {P. Gondolo},
  journal= {arXiv preprint arXiv:hep-ph/9207261},
  year   = {2009}
}

备注

11pp, 1 figure available on request, PHYZZX, Uppsala U. PT17-1992