Combining Hybrid and Opaque Scintillator Techniques in the Search for Double Beta Plus Decays
arXiv:2407.05999 · doi:10.1140/epjc/s10052-025-13847-1
Abstract
Double beta plus decay is a rare nuclear disintegration process. Difficulties in its measurement arise from suppressed decay probabilities, experimentally challenging decay signatures and low natural abundances of suitable candidate nuclei. In this article, we propose a new detector concept to overcome these challenges. It is based on the first-time combination of hybrid and opaque scintillation detector technology paired with novel light read-out techniques. This approach is particularly suitable detecting positron (beta plus) signatures. We expect to discover two-neutrino double beta plus decay modes within 1 tonne-week exposure and are able to probe neutrinoless double beta plus decays at several orders of magnitude improved significance compared to current experimental limits.
18 pages, 9 figures, 3 tables
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Cited by in corpus (4)
- COCOA: a compact Compton camera for astrophysical observation of MeV-scale gamma rays
- Muon tracking in a LiquidO opaque scintillator detector
- Review of Hybrid and Opaque Scintillator Technologies Advancing Neutrino and Dark Matter Detectors
- A Hands-on Experience with a Novel Scintillation Detector for Particle Physics