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Spin light of neutrino in astrophysical environments

High Energy Physics - Phenomenology 2017-11-29 v1

Abstract

The spin  light  of  neutrino{\it {spin \ \ light \ \ of \ \ neutrino}} (SLνSL\nu) is a new possible mechanism of electromagnetic radiation by a massive neutrino (with a nonzero magnetic moment) moving in media. Since the prediction of this mechanism, the question has been debated in a number of publications as whether the effect can be of any significance for realistic astrophysical conditions. Although this effect is strongly suppressed due to smallness of neutrino magnetic moment, for ultra-high energy neutrinos (PeV neutrinos recently observed by the IceCube collaboration, for instance) the SLνSL\nu might be of interest in the case of neutrinos propagating in dense matter. An advanced view on the SLνSL\nu in matter is given, and several astrophysical settings (a neutron star, supernova, Gamma-Ray Burst (GRB), and relic neutrino background) for which the effect can be realized are considered. Taking into account the threshold condition and also several competing processes, we determine conditions for which the SLνSL\nu mechanism is possible. We conclude that the most favorable case of the effect manifestation is provided by ultra dense matter of neutron stars and ultrahigh energy of the radiating neutrino, and note that these conditions can be met within galaxy clusters. It is also shown that due to the SLνSL\nu specific polarization properties this electromagnetic mechanism is of interest in the connection with the observed polarization of GRB emission.

Keywords

Cite

@article{arxiv.1705.07481,
  title  = {Spin light of neutrino in astrophysical environments},
  author = {Alexander Grigoriev and Alexey Lokhov and Alexander Studenikin and Alexei Ternov},
  journal= {arXiv preprint arXiv:1705.07481},
  year   = {2017}
}

Comments

21 pages, 4 figures