Simulation of a radial TPC for the detection of neutrinoless double beta decay

Fuente: arXiv
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Autores principales: Bouet, R., Busto, J., Cadiou, A., Charpentier, P., Charrier, D., Chapellier, M., Dastgheibi-Fard, A., Druillole, F., Hellmuth, P., Jollet, C., Kaizer, J., Kontul, I., Ray, P. Le, Gros, M., Lautridou, P., Macko, M., Meregaglia, A., Piquemal, F., Povinec, P., Roche, M.
Formato: Preprint
Publicado: 2024
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author Bouet, R.
Busto, J.
Cadiou, A.
Charpentier, P.
Charrier, D.
Chapellier, M.
Dastgheibi-Fard, A.
Druillole, F.
Hellmuth, P.
Jollet, C.
Kaizer, J.
Kontul, I.
Ray, P. Le
Gros, M.
Lautridou, P.
Macko, M.
Meregaglia, A.
Piquemal, F.
Povinec, P.
Roche, M.
author_facet Bouet, R.
Busto, J.
Cadiou, A.
Charpentier, P.
Charrier, D.
Chapellier, M.
Dastgheibi-Fard, A.
Druillole, F.
Hellmuth, P.
Jollet, C.
Kaizer, J.
Kontul, I.
Ray, P. Le
Gros, M.
Lautridou, P.
Macko, M.
Meregaglia, A.
Piquemal, F.
Povinec, P.
Roche, M.
contents To search for $β\beta0ν$ decay with unprecedented sensitivity, the R2D2 collaboration is developing a radial time projection chamber with a fiducial mass of half a tonne of $^{136}$Xe at high pressure. The various approaches implemented to eliminate the radioactive background are presented in terms of detector design, topological recognition of interactions, and event energy reconstruction. The developed tools enable the disentangling of the sought-after signal from the background. The projected sensitivity after ten years of data taking yields a half-life limit exceeding $10^{27}$ years, along with a constraint on the effective neutrino mass $m_{ββ}$ that could cover a large fraction of the inverted mass hierarchy region, depending on the final experimental background.
format Preprint
id arxiv_https___arxiv_org_abs_2411_03722
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Simulation of a radial TPC for the detection of neutrinoless double beta decay
Bouet, R.
Busto, J.
Cadiou, A.
Charpentier, P.
Charrier, D.
Chapellier, M.
Dastgheibi-Fard, A.
Druillole, F.
Hellmuth, P.
Jollet, C.
Kaizer, J.
Kontul, I.
Ray, P. Le
Gros, M.
Lautridou, P.
Macko, M.
Meregaglia, A.
Piquemal, F.
Povinec, P.
Roche, M.
Instrumentation and Detectors
High Energy Physics - Experiment
To search for $β\beta0ν$ decay with unprecedented sensitivity, the R2D2 collaboration is developing a radial time projection chamber with a fiducial mass of half a tonne of $^{136}$Xe at high pressure. The various approaches implemented to eliminate the radioactive background are presented in terms of detector design, topological recognition of interactions, and event energy reconstruction. The developed tools enable the disentangling of the sought-after signal from the background. The projected sensitivity after ten years of data taking yields a half-life limit exceeding $10^{27}$ years, along with a constraint on the effective neutrino mass $m_{ββ}$ that could cover a large fraction of the inverted mass hierarchy region, depending on the final experimental background.
title Simulation of a radial TPC for the detection of neutrinoless double beta decay
topic Instrumentation and Detectors
High Energy Physics - Experiment
url https://arxiv.org/abs/2411.03722