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- W2941535453 abstract "In neutrino oscillations, a neutrino created with one flavor can be later detected with a different flavor, with some probability. In general, the probability is computed exactly by diagonalizing the Hamiltonian operator that describes the physical system and that drives the oscillations. Here we introduce an alternative, general-purpose method to compute exact oscillation probabilities, that bypasses diagonalization, and that produces concise and exact expressions for the probabilities. It can be applied to any closed system of two or three neutrino flavors described by an arbitrary time-independent Hamiltonian. This includes, but is not limited to, oscillations in vacuum, in matter of constant density, with non-standard matter interactions, and in a Lorentz-violating background. We employ properties of SU(2) and SU(3) matrices in our derivation, but the final probability expressions are simple and transparent to these manipulations, and can be readily evaluated. To show this, we provide the user-friendly code NuOscProbExact that implements our method." @default.
- W2941535453 created "2019-05-03" @default.
- W2941535453 creator A5075145457 @default.
- W2941535453 date "2019-04-28" @default.
- W2941535453 modified "2023-09-25" @default.
- W2941535453 title "Exact neutrino oscillation probabilities: a fast general-purpose computation method for two and three neutrino flavors." @default.
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