Detecting matter effects in long baseline experiments
arXiv:hep-ph/0410266 · doi:10.1088/1126-6708/2005/07/058
Abstract
Experiments strongly suggest that the flavour mixing responsible for the atmospheric neutrino anomaly is very close to being maximal. Thus, it is of great theoretical as well as experimental importance to measure any possible deviation from maximality. In this context, we reexamine the effects of matter interactions in long baseline neutrino oscillation experiments. Contrary to popular belief, the muon neutrino survival probability is shown to be quite sensitive to matter effects. Moreover, for moderately long baselines, the difference between the survival probilities for and is shown to be large and sensitive to the deviation of from maximality. Performing a realistic analysis, we demonstrate that a muon-storage ring -source alongwith an iron calorimeter detector can measure such deviations. (Contrary to recent claims, this is not so for the NuMI--{\sc minos} experiment.) We also discuss the possible correlation in measuring and in such experiment.
18 pages, LaTex
References in corpus (5)
Cited by in corpus (10)
- Earth Matter Effects at Very Long Baselines and the Neutrino Mass Hierarchy
- Octant sensitivity for large theta(13) in atmospheric and long baseline neutrino experiments
- A First Course on Twistors, Integrability and Gluon Scattering Amplitudes
- Testing non-standard neutrino matter interactions in atmospheric neutrino propagation
- Neutrino oscillation probabilities: Sensitivity to parameters
- Self-Dual Supergravity and Twistor Theory
- Can R-parity violating supersymmetry be seen in long baseline beta-beam experiments?
- Probing Neutrino Oscillation Parameters using High Power Superbeam from ESS
- Large Non-perturbative Effects of Small Δm^2_{21}/Δm^2_{31} and \sin θ_{13} on Neutrino Oscillation and CP Violation in Matter
- A close look on 2-3 mixing angle with DUNE in light of current neutrino oscillation data