Testing Heavy Neutral Leptons in Cosmic Ray Beam Dump experiments
arXiv:2301.07120 · doi:10.1007/JHEP07(2023)193
Abstract
In this work, we discuss the possibility to test Heavy Neutral Leptons (HNLs) using Cosmic Ray Beam Dump experiments. In analogy with terrestrial beam dump experiments, where a beam first hits a target and is then absorbed by a shield, we consider high-energy incident cosmic rays impinging on the Earth's atmosphere and then the Earth's surface. We focus here on HNL production from atmospherically produced kaon, pion and -meson decays, and discuss the possible explanation of the appearing Cherenkov showers observed by the SHALON Cherenkov telescope and the ultra-high energy events detected by the neutrino experiment ANITA. We show that these observations can not be explained with a long-lived HNL, as the relevant parameter space is excluded by existing constraints. Then we propose two new experimental setups that are inspired by these experiments, namely a Cherenkov telescope pointing at the horizon and shielded by the mountain cliff at Mount Thor, and a geostationary satellite that observes part of the Sahara desert. We show that the Cherenkov telescope at Mount Thor can probe currently untested HNL parameter space for masses below the kaon mass. We also show that the geostationary satellite experiment can significantly increase the HNL parameter space coverage in the whole mass range from 10 MeV up to 2 GeV and test neutrino mixing down to for masses around 300 MeV.
23 pages, 7 figures
References in corpus (7)
- Right-Handed Neutrinos at LHC and the Mechanism of Neutrino Mass Generation
- Minimal Flavour Seesaw Models
- Toward the discovery of matter creation with neutrinoless double-beta decay
- The Present and Future Status of Heavy Neutral Leptons
- Searching for light long-lived neutralinos at Super-Kamiokande
- Revisiting PS191 limits on sterile neutrinos
- Laboratory limits on the annihilation or decay of dark matter particles