Akademska digitalna zbirka SLovenije - logo
E-viri
Celotno besedilo
Recenzirano Odprti dostop
  • Large low background kTon-s...
    Bezerra, T; Borkum, A; Church, E; Djurcic, Z; Genovesi, J; Haiston, J; Jackson, C M; Lazanu, I; Monreal, B; Munson, S; Ortiz, C; Parvu, M; Peeters, S J M; Pershey, D; Poudel, S S; Reichenbacher, J; Saldanha, R; Scholberg, K; Sinev, G; Westerdale, S; Zennamo, J

    Journal of physics. G, Nuclear and particle physics, 06/2023, Letnik: 50, Številka: 6
    Journal Article

    Abstract We find that it is possible to increase sensitivity to low energy physics in a third or fourth Deep Underground Neutrino Experiment (DUNE)-like module with careful controls over radiopurity and targeted modifications to a detector similar to the DUNE Far Detector design. In particular, sensitivity to supernova and solar neutrinos can be enhanced with improved MeV-scale reach. A neutrinoless double beta decay search with 136 Xe loading appears feasible. Furthermore, sensitivity to Weakly-Interacting Massive Particle (WIMP) Dark Matter becomes competitive with the planned world program in such a detector, offering a unique seasonal variation detection that is characteristic of the nature of WIMPs.