Quest for the dynamics of conversion
arXiv:hep-ph/0010092 · doi:10.1103/PhysRevD.63.113013
Abstract
We perform a quantitative analysis of the capability of K2K, MINOS, OPERA and a neutrino factory in a muon collider to discriminate the standard mass induced vacuum oscillation from the pure decoherence solution to the atmospheric neutrino problem and thereby contribute to unravel the dynamics that governs the observed disappearence.
34 pages, 12 figures
References in corpus (12)
- Probing possible decoherence effects in atmospheric neutrino oscillations
- Testing Matter Effects in Very Long Baseline Neutrino Oscillation Experiments
- Open system approach to neutrino oscillations
- Neutrino Decay and Atmospheric Neutrinos
- Long Baseline Neutrino Physics with a Muon Storage Ring Neutrino Source
- Testing violations of special and general relativity through the energy dependence of nu_mu<--->nu_tau oscillations in the Super-Kamiokande atmospheric neutrino experiment
- Long-Baseline Study of the Leading Neutrino Oscillation at a Neutrino Factory
- Quantum Dissipative Effects and Neutrinos : current constraints and future perspectives
- Effects of quantum space time foam in the neutrino sector
- New results on atmospheric neutrinos from Soudan 2
- ICANOE and OPERA experiments at the LNGS/CNGS
- Atmospheric Neutrinos
Cited by in corpus (8)
- Status of non-standard neutrino interactions
- Neutrino Interactions In Oscillation Experiments
- Status of atmospheric neutrino(mu)<-->neutrino(tau) oscillations and decoherence after the first K2K spectral data
- Probing Flavor Changing Neutrino Interactions Using Neutrino Beams from a Muon Storage Ring
- Damping signatures in future neutrino oscillation experiments
- Probing Nonstandard Neutrino Physics by Two Identical Detectors with Different Baselines
- Density Matrix Formalism for PT-Symmetric Non-Hermitian Hamiltonians with the Lindblad Equation
- Seesaw tau lepton mass and calculable neutrino masses in a 3-3-1 model