arXiv:0801.0872·v2·High Energy Physics — Phenomenology
Quantum-Gravity Decoherence Effects in Neutrino Oscillations: Expected Constraints from CNGS and J-PARC
Nick E. Mavromatos🇬🇧 · Anselmo Meregaglia🇨🇭 · Andre Rubbia🇨🇭 · Alexander Sakharov🇨🇭 · Sarben Sarkar🇬🇧
Abstract
Quantum decoherence, the evolution of pure states into mixed states, may be a feature of quantum-gravity models. In most cases, such models lead to fewer neutrinos of all active flavours being detected in a long baseline experiment as compared to three-flavour standard neutrino oscillations. We discuss the potential of the CNGS and J-PARC beams in constraining models of quantum-gravity induced decoherence using neutrino oscillations as a probe. We use as much as possible model-independent parameterizations, even though they are motivated by specific microscopic models, for fits to the expected experimental data which yield bounds on quantum-gravity decoherence parameters.
Comments: 40 pages, 8 figures, minor corrections