Physics – Nuclear Physics
Scientific paper
Jan 2000
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2000nuphb.564..204a&link_type=abstract
Nuclear Physics B, Vol. B564, No. 1 - 2, p. 204 - 222
Physics
Nuclear Physics
17
Neutrinos: Origin, Neutrinos: Dark Matter, Neutrinos: Nucleosynthesis, Neutrinos: Supernovae, Neutrinos: Early Universe
Scientific paper
For Dirac neutrinos with magnetic moment, the authors compute the production rate for right-handed neutrinos in a hot and dense QED plasma containing an initial population of left-handed neutrinos thermally distributed. The most important mechanisms for νL depolarization, or production of right-handed neutrinos, are the νL→νR chirality flip and the plasmon decay to ν¯L+νR. The rates for these processes are computed in terms of a resummed photon propagator which consistently incorporates the background effects to leading order. Applying the results to the cases of supernovae core collapse and the primordial nucleosynthesis in the early universe, the authors obtain upper limits on the neutrino magnetic moment.
Ayala Alejandro
D'Olivo Juan Carlos
Torres Manuel
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