Exploring new physics with DUNE high energy flux: the case of Lorentz Invariance Violation, Large Extra Dimensions and Long Range Forces
arXiv:2407.17247 · doi:10.3390/universe10090357
Abstract
DUNE is a next-generation long-baseline neutrino oscillation experiment. It is expected to measure with an unprecedent precision the atmospheric oscillation parameters, including the CP-violating phase . Moreover, several studies have suggested that its unique features should allow DUNE to probe several new physics scenarios. In this work, we explore the performances of the DUNE far detector in constraining new physics if a high-energy neutrino flux is employed (HE-DUNE). We take into account three different scenarios: Lorentz Invariance Violation (LIV), Long Range Forces (LRF) and Large Extra Dimensions (LED). Our results show that HE-DUNE should be able to set bounds competitive to the current ones and, in particular, it can outperform the standard DUNE capabilities in constraining CPT-even LIV parameters and the compactification radius of the LED model.
32 pages, 7 figures
References in corpus (36)
- Observation of electron-antineutrino disappearance at Daya Bay
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- New features in the simulation of neutrino oscillation experiments with GLoBES 3.0
- IceCube-Gen2: The Window to the Extreme Universe
- Non-standard neutrino interactions in reactor and superbeam experiments
- Prospects for Beyond the Standard Model Physics Searches at the Deep Underground Neutrino Experiment
- Search for a Lorentz-violating sidereal signal with atmospheric neutrinos in IceCube
- Test of Lorentz invariance with atmospheric neutrinos
- CP-Violating Neutrino Non-Standard Interactions in Long-Baseline-Accelerator Data
- Physics with Beam Tau-Neutrino Appearance at DUNE
- Snowmass White Paper: Beyond the Standard Model effects on Neutrino Flavor
- Gauged L_mu - L_tau and different Muon Neutrino and Anti-Neutrino Oscillations: MINOS and beyond
- Testing for Large Extra Dimensions with Neutrino Oscillations
- Neutrinos in Large Extra Dimensions and Short-Baseline Appearance
- Tau Neutrinos in the Next Decade: from GeV to EeV
- Neutrino Oscillation Constraints on U(1)' Models: from Non-Standard Interactions to Long-Range Forces
- Signatures of Extra Dimensional Sterile Neutrinos
- Large Extra Dimensions and neutrino experiments
- How to Identify Different New Neutrino Oscillation Physics Scenarios at DUNE
- Constraints on flavor-dependent long range forces from solar neutrinos and KamLAND
- Constraining new physics scenarios in neutrino oscillations from Daya Bay data
- Hint of CPT Violation in Short-Baseline Electron Neutrino Disappearance
- Neutrino vs. Antineutrino Oscillation Parameters at DUNE and Hyper-Kamiokande
- Neutrino oscillation bounds on quantum decoherence
- Solar neutrino physics
- Three-flavour oscillations with accelerator neutrino beams
- Probing Large Extra Dimensions With IceCube
- CPT violation in long baseline neutrino experiments: a three flavor analysis
- Sensitivities of future reactor and long-baseline neutrino experiments to NSI
- Distinguishing Non-Standard Interaction and Lorentz Invariance Violation at Protvino to Super-ORCA experiment
- Probing Lorentz Invariance Violation with Atmospheric Neutrinos at INO-ICAL
- Investigating Lorentz Violation with the long baseline experiment P2O
- Capability of the proposed long-baseline experiments to probe large extra dimension
- Impact of scalar NSI on the neutrino mass ordering sensitivity at DUNE, HK and KNO
- Constraining Lorentz Invariance Violation with Next-Generation Long-Baseline Experiments
- A plethora of long-range neutrino interactions probed by DUNE and T2HK