English

Dirac-Neutrino Magnetic Moment and the Dynamics of a Supernova Explosion

High Energy Physics - Phenomenology 2014-11-18 v1 High Energy Astrophysical Phenomena

Abstract

The double conversion of the neutrino helicity νLνRνL\nu_L \to \nu_R \to \nu_L has been analyzed for supernova conditions, where the first stage is due to the interaction of the neutrino magnetic moment with plasma electrons and protons in the supernova core, and the second stage, due to the resonance spin flip of the neutrino in the magnetic field of the supernova envelope. It is shown that, in the presence of the neutrino magnetic moment in the range 1013μB<μν<1012μB10^{-13} \mu_{\rm B} < \mu_\nu < 10^{-12} \mu_{\rm B} and a magnetic field of 1013\sim 10^{13} G between the neutrinosphere and the shock-stagnation region, an additional energy of about 105110^{51} erg, which is sufficient for a supernova explosion, can be injected into this region during a typical shock-stagnation time.

Keywords

Cite

@article{arxiv.0903.2321,
  title  = {Dirac-Neutrino Magnetic Moment and the Dynamics of a Supernova Explosion},
  author = {A. V. Kuznetsov and N. V. Mikheev and A. A. Okrugin},
  journal= {arXiv preprint arXiv:0903.2321},
  year   = {2014}
}

Comments

10 pages, LaTeX, 4 EPS figures, accepted to JETP Letters