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arXiv:hep-ph/9406397·v1·High Energy Physics — Phenomenology

Upper bound on Hot Dark Matter Density from Yukawa Unification

Andrea Brignole🇺🇸 · Hitoshi Murayama (LBL)🇺🇸 · Riccardo Rattazzi (Rutgers U.)🇺🇸

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Abstract

We study low-energy consequences of supersymmetric models with Yukawa unification and . We find that it is difficult to reproduce the observed ratio when the third-generation right-handed neutrino is at an intermediate scale, especially for small . We obtain a conservative lower bound on the mass of the right-handed neutrino ~GeV for . This bound translates into an upper bound on the -neutrino mass, and therefore on its contribution to the hot dark matter density of the present universe, . Our analysis is based on the full two-loop renormalization group equations with one-loop threshold effects. However, we also point out that physics above the GUT-scale could modify the Yukawa unification condition for . This might affect the prediction of and the constraint on .

Comments: LBL-35774, RU-94-51, 18 pages, plain LaTeX, two PostScript figures appended in uuencoded format

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