Neutrino oscillations: Entanglement, energy-momentum conservation and QFT
arXiv:1008.2077 · doi:10.1007/s10701-011-9545-4
Abstract
We consider several subtle aspects of the theory of neutrino oscillations which have been under discussion recently. We show that the -matrix formalism of quantum field theory can adequately describe neutrino oscillations if correct physics conditions are imposed. This includes space-time localization of the neutrino production and detection processes. Space-time diagrams are introduced, which characterize this localization and illustrate the coherence issues of neutrino oscillations. We discuss two approaches to calculations of the transition amplitudes, which allow different physics interpretations: (i) using configuration-space wave packets for the involved particles, which leads to approximate conservation laws for their mean energies and momenta; (ii) calculating first a plane-wave amplitude of the process, which exhibits exact energy-momentum conservation, and then convoluting it with the momentum-space wave packets of the involved particles. We show that these two approaches are equivalent. Kinematic entanglement (which is invoked to ensure exact energy-momentum conservation in neutrino oscillations) and subsequent disentanglement of the neutrinos and recoiling states are in fact irrelevant when the wave packets are considered. We demonstrate that the contribution of the recoil particle to the oscillation phase is negligible provided that the coherence conditions for neutrino production and detection are satisfied. Unlike in the previous situation, the phases of both neutrinos from decay are important, leading to a realization of the Einstein-Podolsky-Rosen paradox.
30 pages, 3 eps figures; presentation improved, clarifications added. To the memory of G.T. Zatsepin
References in corpus (1)
Cited by in corpus (15)
- Scattering of wave packets with phases
- Probing phase of a scattering amplitude beyond the plane-wave approximation
- Microscopic and Macroscopic Effects in the Decoherence of Neutrino Oscillations
- Covariant asymmetric wave packet for a field-theoretical description of neutrino oscillations
- Quantum coherence and entanglement in neutral-current neutrino oscillation in matter
- On the evolution of an entangled lepton-neutrino pair
- Towards a Localised S-Matrix Theory
- Where Neutrino Decoherence Lies
- Virtual neutrino propagation at short baselines
- Quantum entanglement between neutrino eigenstates in the presence of the subsequent phase shift of the neutrino oscillations
- 50 Years of Neutrino Physics
- Entangled Neutrino States in a Toy Model QFT
- Undecay
- Decoherence in Neutrino Oscillation between 3D Gaussian Wave Packets
- Position-space representation of charged particles' propagators in a constant magnetic field as an expansion over Landau levels