OPERA neutrinos and relativity
arXiv:1110.0521 · doi:10.1142/S0217732312500630
Abstract
In a recent study, Cohen and Glashow argue that superluminal neutrinos of the type recently reported by OPERA should be affected by anomalous Cherenkov-like processes. This causes them to loose much of their energy before reaching the OPERA detectors. Related concerns were reported also by Gonzalez-Mestres and Bi et. al., who argued that pions cannot decay to superluminal neutrinos over part of the energy range studied by OPERA. We observe here that these arguments are set within a framework in which Lorentz symmetry is broken, by the presence of a preferred frame. We further show that these anomalous processes are forbidden if Lorentz symmetry is instead "deformed", preserving the relativity of inertial frames. These deformations add non-linear terms to energy momentum relations, conservation laws and Lorentz transformations in a way that is consistent with the relativity of inertial observers.
5 pages, some citations added; in v3 a footnote added and minor changes in the text made, the final version to appear in MPLA
References in corpus (5)
- New Constraints on Neutrino Velocities
- Bounds on an energy-dependent and observer-independent speed of light from violations of locality
- Constraints and tests of the OPERA superluminal neutrinos
- OPERA-reassessing data on the energy dependence of the speed of neutrinos
- Superluminal Neutrinos at OPERA Confront Pion Decay Kinematics
Cited by in corpus (10)
- Inertial frames without the relativity principle
- Uncertainties in Constraints from Pair Production on Superluminal Neutrinos
- Violations of Lorentz invariance in the neutrino sector: an improved analysis of anomalous threshold constraints
- Neutrino Dispersion Relations from a Dark Energy Model
- Quantum gravity phenomenology at the dawn of the multi-messenger era -- A review
- Background Dependent Lorentz Violation: Natural Solutions to the Theoretical Challenges of the OPERA Experiment
- The Superluminal Neutrinos from Deformed Lorentz Invariance
- Neutrino processes with power law dispersion relations
- Testing the Special Relativity Theory with Neutrino interactions
- Is the Lorentz limiting speed equal to the Speed of Light? Photons vs Neutrino tests