Physics – High Energy Physics – High Energy Physics - Phenomenology
Scientific paper
1995-01-10
Ann.Phys.244:283-311,1995; Erratum-ibid.249:363-364,1996
Physics
High Energy Physics
High Energy Physics - Phenomenology
28 pages, LaTex
Scientific paper
10.1006/aphy.1995.1115
The fermion mixing transformations are studied in the quantum field theory framework. In particular neutrino mixing is considered and the Fock space of definite flavor states is shown to be unitarily inequivalent to the Fock space of definite mass states. The flavor oscillation formula is computed for two and three flavors mixing and the oscillation amplitude is found to be momentum dependent, a result which may be subject to experimental test. The flavor vacuum state exhibits the structure of $SU(2)$ generalized coherent state.
Blasone Massimo
Vitiello Giuseppe
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