arXiv · 1510.03266
Background suppression in massive TeO$_2$ bolometers with Neganov-Luke amplified light detectors
Abstract
Bolometric detectors are excellent devices for the investigation of neutrinoless double-beta decay (0$νββ$). The observation of such decay would demonstrate the violation of lepton number, and at the same time it would necessarily imply that neutrinos have a Majorana character. The sensitivity of cryogenic detectors based on TeO$_2$ is strongly limited by the alpha background in the region of interest for the 0$νββ$ of $^{130}$Te. It has been demonstrated that particle discrimination in TeO$_2$ bolometers is possible measuring the Cherenkov light produced by particle interactions. However an event-by-event discrimination with NTD-based light detectors has to be demonstrated. We will discuss the performance of a highly-sensitive light detector exploiting the Neganov-Luke effect for signal amplification. The detector, being operated with NTD-thermistor and coupled to a 750 g TeO$_2$ crystal, shows the ability for an event-by-event identification of electron/gamma and alpha particles. The extremely low detector baseline noise, RMS 19 eV, demonstrates the possibility to enhance the sensitivity of TeO$_2$-based 0$νββ$ experiment to an unprecedented level.
Explore related subjects
Keep this discovery
N. Casali, L. Dumoulin, A. Giuliani, M. Mancuso, P. de Marcillac, S. Marnieros, S. S. Nagorny, C. Nones, E. Olivieri, L. Pagnanini, L. Pattavina, S. Pirro, D. Poda, C. Rusconi, K. Schäeffner, M. Tenconi. 2015-12-01. Background suppression in massive TeO$_2$ bolometers with Neganov-Luke amplified light detectors. https://doi.org/10.1007/s10909-015-1404-9
Cite the original work for its findings. Save a collection to share your selection of sources.