Published 1991 | Version v1
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Nucleosynthesis confronts an unstable inert 17 keV state

  • 1. Nordisk Inst. for Teoretisk Fysik (NORDITA), Copenhagen (Denmark)
  • 2. Manchester Univ. (UK). Dept. of Theoretical Physics

Description

We study the cosmological consequences of an inert 17 keV state mixing with the electron neutrino. We find that the nucleosynthesis upper bound on the primordial helium abundance prohibits the existence of such a state, unless its lifetime falls into the range 6x10-4s< or approx.τvac< or approx.2x10-2s. In this range the decay occurs after the chemical decoupling of the electron neutrinos and before the beginning of the nucleosynthesis, with the result that the predicted helium abundance can be lower than what it would be in the standard scenario. (orig.)

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Imprint Pagination
12 p.
Report number
NORDITA--91/48-P(prepr.)