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Spin-flavor oscillations of Dirac neutrinos in a plane electromagnetic wave

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arxiv 1806.08719 v2 pith:EONXC5LH submitted 2018-06-22 hep-ph

classification hep-ph
keywords oscillationselectromagneticspin-flavorwaveneutrinosdiracmagneticmathrm
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We study spin and spin-flavor oscillations of Dirac neutrinos in a plane electromagnetic wave with circular polarization. The evolution of massive neutrinos with nonzero magnetic moments in the field of an electromagnetic wave is based on the exact solution of the Dirac-Pauli equation. We formulate the initial condition problem to describe spin-flavor oscillations in an electromagnetic wave. The transition probabilities for spin and spin-flavor oscillations are obtained. In case of spin-flavor oscillations, we analyze the transition and survival probabilities for different neutrino magnetic moments and various channels of neutrino oscillations. As an application of the obtained results, we study the possibility of existence of $\nu_{e\mathrm{L}}\to\nu_{\mu\mathrm{R}}$ oscillations in an electromagnetic wave emitted by a highly magnetized neutron star. Our results are compared with findings of other authors.

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  1. Quantum field theory treatment of neutrino flavor oscillations in matter

    hep-ph 2024-11 conditional novelty 5.0 of 10

    The virtual-particle QFT formalism with exact matter propagators for Majorana neutrinos reproduces the standard MSW oscillation probability in uniform matter.

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