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arxiv: 1008.0306 · v2 · pith:ZHHEWFTNnew · submitted 2010-08-02 · ✦ hep-ph · hep-th· quant-ph

A diagrammatic treatment of neutrino oscillations

classification ✦ hep-ph hep-thquant-ph
keywords flavorneutrinoneutrinosapproachdetectordiagramsdifferentialfactor
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We present a covariant wave-packet approach to neutrino flavor transitions in vacuum. The approach is based on the technique of macroscopic Feynman diagrams describing the lepton number violating processes of production and absorption of virtual massive neutrinos at the macroscopically separated space-time regions ("source" and "detector"). Accordingly, the flavor transitions are a result of interference of the diagrams with neutrinos of different masses in the intermediate states. The statistically averaged probability of the process is representable as a multidimensional integral of the product of the factors which describe the differential flux density of massless neutrinos from the source, differential cross section of the neutrino interaction with the detector and a dimensionless factor responsible for the flavor transition. The conditions are analyzed under which the last factor can be treated as the flavor transition probability in the usual quantum-mechanical sense.

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    Derives an extended flavor-changing amplitude showing oscillations require propagation time above a threshold set by energy uncertainty and decay width, distinguishing real from virtual propagation.