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7 keV sterile neutrino dark matter from split flavor mechanism

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Abstract

The recently discovered X-ray line at about 3.5 keV can be explained by sterile neutrino dark matter with mass, ms≃7 keV, and the mixing, sin22θ∼10-10. Such sterile neutrino is more long-lived than estimated based on the seesaw formula, which strongly suggests an extra flavor structure in the seesaw sector. We show that one can explain both the small mass and the longevity based on the split flavor mechanism where the breaking of flavor symmetry is tied to the breaking of the B-L symmetry. In a supersymmetric case we find that the 7 keV sterile neutrino implies the gravitino mass about 100 TeV.


Publication:

Physics Letters B

Pub Date:
May 2014
DOI:

10.1016/j.physletb.2014.03.044

10.48550/arXiv.1402.5837

arXiv:
arXiv:1402.5837
Bibcode:
2014PhLB..732..196I
Keywords:
  • High Energy Physics - Phenomenology;
  • Astrophysics - Cosmology and Nongalactic Astrophysics
E-Print:
14 pages, 1 figure