Currents and charges for mixed fields
arXiv:hep-th/0103087 · doi:10.1016/S0370-2693(01)00985-6
Abstract
We present an analysis of currents and charges for a system of two mixed fields, both for spinless bosons and for Dirac fermions. This allows us to obtain in a straightforward way the exact field theoretical oscillation formulas exhibiting corrections with respect to the usual ones derived in quantum mechanics.
4 pages, RevTeX
References in corpus (2)
Cited by in corpus (26)
- Oscillations of neutrinos and mesons in quantum field theory
- Entanglement in neutrino oscillations
- Quantum Field Theory of three flavor neutrino mixing and oscillations with CP violation
- Neutrino mixing contribution to the cosmological constant
- Towards a unique formula for neutrino oscillations in vacuum
- Lepton charge and neutrino mixing in pion decay processes
- A field-theoretical approach to entanglement in neutrino mixing and oscillations
- Role of neutrino mixing in accelerated proton decay
- Neutrino oscillations from relativistic flavor currents
- Fermion mixing in quasi-free states
- Neutrino oscillations in the Unruh radiation
- On the beta-decay of the accelerated proton and neutrino oscillations: a three-flavor description with CP violation
- Flavor Energy uncertainty relations for neutrino oscillations in quantum field theory
- Neutrino mixing and Lorentz invariance
- Mixing and oscillations of neutral particles in Quantum Field Theory
- On flavor conservation in weak interaction decays involving mixed neutrinos
- Non-abelian gauge structure in neutrino mixing
- Dynamical generation of field mixing via flavor vacuum condensate
- On the role of the rotations and Bogoliubov transformations in neutrino mixing
- On entanglement in neutrino mixing and oscillations
- Non-relativistic neutrinos and the weak equivalence principle apparent violation
- Physical flavor neutrino states
- On the flavor/mass dichotomy for mixed neutrinos: a phenomenologically motivated analysis based on lepton charge conservation in neutron decay
- A framework for dynamical generation of flavor mixing
- Flavor neutrino states for pedestrians
- Theory of Neutrino Detection -- Flavor Oscillations and Weak Values