Indirect search of Heavy Neutral Leptons using the DUNE Near Detector
arXiv:2202.09217 · doi:10.3389/fphy.2024.1398070
Abstract
We evaluate the potential of the DUNE Near Detector (DUNEND) for establishing bounds for heavy neutral leptons (HNL). This is achieved by studying how the presence of HNLs affects the production rates of active neutrinos, therefore, creating a deficit in the neutrino charged current (CC) events at the LArTPC of the DUNEND. The estimated bounds on HNLs are calculated for masses between 1 eV and 500 MeV. We consider 10 years of operation (5 in neutrino and antineutrino mode) and obtain limits of and for masses below 10 MeV and a 5\%(20\%) overall normalization uncertainty in the neutrino charged current event rates prediction. These limits, within the region of masses below 2(10) MeV, are better than those that can be achieved by DUNE direct searches for the case of a 5\%(20\%) uncertainty. When a conservative 20\% uncertainty is present, our limits can only improve current constraints on by up to a factor of 3 in a small region around 5 eV and set limits on in a mass region free of constraints (40 eV - 1 MeV).
11 pages, 13 figures; the chi2 is now calculated by comparing the neutrino CC spectra instead of the total CC events
References in corpus (10)
- An Introduction to PYTHIA 8.2
- Leptogenesis
- Light Sterile Neutrinos: A White Paper
- Neutrinoless double beta decay versus other probes of heavy sterile neutrinos
- Search for heavy neutrinos in decays
- Searches for Decays of New Particles in the DUNE Multi-Purpose Near Detector
- Deep Underground Neutrino Experiment (DUNE), Far Detector Technical Design Report, Volume II: DUNE Physics
- Neutrino oscillations: the rise of the PMNS paradigm
- Heavy neutral leptons below the kaon mass at hodoscopic detectors
- Experiment Simulation Configurations Approximating DUNE TDR