Accounting for the Heisenberg and Pauli principles in the kinetic approach to neutrino oscillations

Author:

Kartavtsev A.

Abstract

Abstract While oscillations of solar neutrinos are usually studied using the single-particle quantum-mechanical approach, flavor conversions of supernovae neutrinos are typically analyzed using the kinetic equation for the matrix of densities due to the necessity of including also the scattering processes. Using the Wigner formulation of quantum mechanics we show the equivalence of the quantum-mechanical and kinetic approaches in the limit of collision-less neutrino propagation (in a background medium). Based on this observation we also argue that solutions of the kinetic equation account for the Heisenberg uncertainty principle and the related effect of wave packet separation (for single neutrinos), as well as the Pauli exclusion principle, if the initial conditions are consistent with these fundamental quantum principles. Such initial conditions can be constructed e.g. by identifying the matrix of densities with the (reduced) single-particle Wigner function computed using initial conditions for the neutrino wave function. Hence the neutrino momentum uncertainty is an integral part of the initial conditions for the matrix of densities, that may have an impact on the phenomenology of supernovae neutrinos via the effect of wave packet separation.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Reference89 articles.

1. J. Davis, Raymond, D.S. Harmer and K.C. Hoffman, Search for neutrinos from the Sun, Phys. Rev. Lett. 20 (1968) 1205 [INSPIRE].

2. Super-Kamiokande collaboration, Determination of solar neutrino oscillation parameters using 1496 days of Super-Kamiokande I data, Phys. Lett. B 539 (2002) 179 [hep-ex/0205075] [INSPIRE].

3. SNO collaboration, Direct evidence for neutrino flavor transformation from neutral current interactions in the Sudbury Neutrino Observatory, Phys. Rev. Lett. 89 (2002) 011301 [nucl-ex/0204008] [INSPIRE].

4. J.N. Bahcall, M.H. Pinsonneault and S. Basu, Solar models: current epoch and time dependences, neutrinos, and helioseismological properties, Astrophys. J. 555 (2001) 990 [astro-ph/0010346] [INSPIRE].

5. Kamiokande-II collaboration, Observation of a neutrino burst from the Supernova SN 1987a, Phys. Rev. Lett. 58 (1987) 1490 [INSPIRE].

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