Non-minimal Lorentz invariance violation in light of muon anomalous magnetic moment and long-baseline neutrino oscillation data
arXiv:2111.14336 · doi:10.1103/PhysRevD.105.096029
Abstract
In light of the increasing hints of new physics at the muon and neutrino oscillation experiments, we consider the recently observed tension in the long-baseline neutrino oscillation experiments as a potential indication of Lorentz invariance violation. For this purpose, the latest data from T2K and NOA is analysed in presence of non-minimal Lorentz invariance violation. Indeed, we find that isotropic violation in dimensions 4, 5 and 6 can alleviate the tension in neutrino oscillation data by 0.42.4 CL significance, with the isotropic coefficient 3.5810GeV yielding the best fit. At the same time, the anomalous muon result can be reproduced with an additional non-isotropic violation of -1.710. The analysis highlights the possibility of simultaneous relaxation of experimental tensions with Lorentz invariance violation of mixed nature.
11 pages, 4 figures, 2 tables; accepted for publication in Physical Review D
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- Distinguishing Non-Standard Interaction and Lorentz Invariance Violation at Protvino to Super-ORCA experiment
- Investigating Lorentz Violation with the long baseline experiment P2O
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