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Possible tests of neutrino maximal mixing and comments on matter effects

Bilenky, S M, Giunti, C, Kim, C W

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Abstract

We show in a simple and general way that matter effects do not contribute to the averaged value of the probabilities of transition of solar \\nu_e's into other states in the case of maximal mixing of any number of massive neutrinos. We also show that future solar neutrino experiments (Super-Kamiokande and SNO) will allow to test the model with maximal mixing of three massive neutrinos in a way that does not depend on the initial solar neutrino flux.

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What this paper is about

We show in a simple and general way that matter effects do not contribute to the averaged value of the probabilities of transition of solar \\nu_e's into other states in the case of maximal mixing of any number of massive neutrinos. We also show that future solar neutrino experiments (Super-Kamiokande and SNO) will allow to test the model with maximal mixing of three massive neutrinos in a way that does not depend on the initial solar neutrino flux.

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Available abstract

We show in a simple and general way that matter effects do not contribute to the averaged value of the probabilities of transition of solar \\nu_e's into other states in the case of maximal mixing of any number of massive neutrinos. We also show that future solar neutrino experiments (Super-Kamiokande and SNO) will allow to test the model with maximal mixing of three massive neutrinos in a way that does not depend on the initial solar neutrino flux.

Key concepts: Neutrino, Solar neutrino, Mixing (physics), Physics, Solar neutrino problem, Particle physics, Flux (metallurgy), Neutrino oscillation

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