A review of the tension between the T2K and NOA appearance data and hints to new physics
arXiv:2201.03250 · doi:10.3390/universe8020109
Abstract
In this article, we review the status of the tension between the long-baseline accelerator neutrino experiments T2K and NOA. The tension arises mostly due to the mismatch in the appearance data of the two experiments. We explain how this tension arises based on and oscillation probabilities. We define the reference point of vacuum oscillation, maximal and and compute the appearance events for each experiment. We then study the effects of deviating the unknown parameters from the reference point and the compatibility of any given set of values of unknown parameters with the data from T2K and NOA. T2K observes a large excess in the appearance event sample compared to the expected events at the reference point, whereas \nova observes a moderate excess. The large excess in T2K dictates that be anchored at and that with a preference for normal hierarchy. The moderate excess at NOA leads to two degenerate solutions: A) NH, , and ; B) IH, , and . This is the main cause of the tension between the two experiments. We have reviewed the status of three beyond standard model (BSM) physics scenarios, (a) non-unitary mixing, (b) Lorentz invariance violation and (c) non-standard neutrino interactions, to resolve the tension.
Review article, 59 pages, 17 figures, 7 tables
References in corpus (23)
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- 2020 Global reassessment of the neutrino oscillation picture
- New features in the simulation of neutrino oscillation experiments with GLoBES 3.0
- Measurement of the solar neutrino capture rate with gallium metal. III: Results for the 2002--2007 data-taking period
- Global status of neutrino oscillation parameters after Neutrino-2012
- Global fit to three neutrino mixing: critical look at present precision
- Status of non-standard neutrino interactions
- Non-unitarity of the leptonic mixing matrix: Present bounds and future sensitivities
- General bounds on non-standard neutrino interactions
- Global three-parameter model for neutrino oscillations using Lorentz violation
- Improved constraints on neutrino mixing from the T2K experiment with protons on target
- Test of Lorentz invariance with atmospheric neutrinos
- CP-Violating Neutrino Non-Standard Interactions in Long-Baseline-Accelerator Data
- Degeneracy between octant and neutrino non-standard interactions at DUNE
- Non-standard neutrino interactions as a solution to the NOA and T2K discrepancy
- Perturbation Theory of Neutrino Oscillation with Nonstandard Neutrino Interactions
- Back to (Mass-)Square(d) One: The Neutrino Mass Ordering in Light of Recent Data
- Potential of optimized NOvA for large theta(13) & combined performance with a LArTPC & T2K
- Hint of CPT Violation in Short-Baseline Electron Neutrino Disappearance
- Neutrino vs. Antineutrino Oscillation Parameters at DUNE and Hyper-Kamiokande
- The Discovery reach of violation in neutrino oscillation with non-standard interaction effects
- Extrinsic and Intrinsic CPT Asymmetries in Neutrino Oscillations
- CPT violation in long baseline neutrino experiments: a three flavor analysis
Cited by in corpus (11)
- Very Light Sterile Neutrinos at NOvA and T2K
- Scalar-singlet assisted leptogenesis with CP violation from the vacuum
- Quantum Spread Complexity in Neutrino Oscillations
- Vector leptoquark and CP violation at T2K, NOvA experiments
- Alleviating the present tension between T2K and NOA with nonstandard neutrino interactions
- Enhancing the sensitivity to neutrino oscillation parameters using synergy between T2K, NOA and JUNO
- Effects of tau-neutrino detection on non-standard interactions at DUNE with a short discussion on the nature of neutrino mixing
- Impact of CP violation searches at MOMENT experiment with sterile neutrinos
- Standard and Non-Standard Aspects of Neutrino Physics
- Update on non-unitary mixing in the recent NOA and T2K data
- The Sensitivity of DUNE in Presence of Off-Diagonal Scalar NSI Parameters