Massive Tau Neutrino and SN 1987a
Abstract
The emission of -mass tau neutrinos from newly formed neutron stars is considered in a simple, but accurate, model based upon the diffusion approximation. The tau-neutrinosphere temperature is found to increase with mass so that emission of massive tau neutrinos is not suppressed by the Boltzmann factor previously used, , where . If the tau neutrino decays to electron neutrinos, then for short lifetimes () the location of both the tau and electron neutrinospheres can be affected, and, for very short lifetimes () its temperature falls below , in conflict with neutrino observations of Supernova 1987A (SN 87A). Using our results, we revise limits to the mass/lifetime of an -mass tau neutrino based upon SN 87A. Our constraints, together with bounds based upon primordial nucleosynthesis and the laboratory mass limit of around , exclude the possibility of a tau neutrino more massive than if the dominant decay mode is radiative. Finally, we speculate on the possible role a tau neutrino might play in the supernova explosion itself.
Cite
@article{arxiv.astro-ph/9405036,
title = {Massive Tau Neutrino and SN 1987a},
author = {G. Sigl and M. S. Turner},
journal= {arXiv preprint arXiv:astro-ph/9405036},
year = {2009}
}
Comments
14 LATEX pages, 11 Figures available on request, FNAL-Pub-94/001-A