NEXO: neutrinoless double beta decay search beyond 1028 year half-life sensitivity. (3rd December 2021)
- Record Type:
- Journal Article
- Title:
- NEXO: neutrinoless double beta decay search beyond 1028 year half-life sensitivity. (3rd December 2021)
- Main Title:
- NEXO: neutrinoless double beta decay search beyond 1028 year half-life sensitivity
- Authors:
- Adhikari, G
Al Kharusi, S
Angelico, E
Anton, G
Arnquist, I J
Badhrees, I
Bane, J
Belov, V
Bernard, E P
Bhatta, T
Bolotnikov, A
Breur, P A
Brodsky, J P
Brown, E
Brunner, T
Caden, E
Cao, G F
Cao, L
Chambers, C
Chana, B
Charlebois, S A
Chernyak, D
Chiu, M
Cleveland, B
Collister, R
Czyz, S A
Dalmasson, J
Daniels, T
Darroch, L
DeVoe, R
Di Vacri, M L
Dilling, J
Ding, Y Y
Dolgolenko, A
Dolinski, M J
Dragone, A
Echevers, J
Elbeltagi, M
Fabris, L
Fairbank, D
Fairbank, W
Farine, J
Ferrara, S
Feyzbakhsh, S
Fu, Y S
Gallina, G
Gautam, P
Giacomini, G
Gillis, W
Gingras, C
Goeldi, D
Gornea, R
Gratta, G
Hardy, C A
Harouaka, K
Heffner, M
Hoppe, E W
House, A
Iverson, A
Jamil, A
Jewell, M
Jiang, X S
Karelin, A
Kaufman, L J
Kotov, I
Krücken, R
Kuchenkov, A
Kumar, K S
Lan, Y
Larson, A
Leach, K G
Lenardo, B G
Leonard, D S
Li, G
Li, S
Li, Z
Licciardi, C
Lindsay, R
MacLellan, R
Mahtab, M
Martel-Dion, P
Masbou, J
Massacret, N
McElroy, T
McMichael, K
Peregrina, M Medina
Michel, T
Mong, B
Moore, D C
Murray, K
Nattress, J
Natzke, C R
Newby, R J
Ni, K
Nolet, F
Nusair, O
Ondze, J C Nzobadila
Odgers, K
Odian, A
Orrell, J L
Ortega, G S
Overman, C T
Parent, S
Perna, A
Piepke, A
Pocar, A
Pratte, J-F
Priel, N
Radeka, V
Raguzin, E
Ramonnye, G J
Rao, T
Rasiwala, H
Rescia, S
Retière, F
Ringuette, J
Riot, V
Rossignol, T
Rowson, P C
Roy, N
Saldanha, R
Sangiorgio, S
Shang, X
Soma, A K
Spadoni, F
Stekhanov, V
Sun, X L
Tarka, M
Thibado, S
Tidball, A
Todd, J
Totev, T
Triambak, S
Tsang, R H M
Tsang, T
Vachon, F
Veeraraghavan, V
Viel, S
Vivo-Vilches, C
Vogel, P
Vuilleumier, J-L
Wagenpfeil, M
Wager, T
Walent, M
Wamba, K
Wang, Q
Wei, W
Wen, L J
Wichoski, U
Wilde, S
Worcester, M
Wu, S X
Wu, W H
Wu, X
Xia, Q
Yan, W
Yang, H
Yang, L
Zeldovich, O
Zhao, J
Ziegler, T
… (more) - Abstract:
- Abstract: The nEXO neutrinoless double beta (0 νββ ) decay experiment is designed to use a time projection chamber and 5000 kg of isotopically enriched liquid xenon to search for the decay in 136 Xe. Progress in the detector design, paired with higher fidelity in its simulation and an advanced data analysis, based on the one used for the final results of EXO-200, produce a sensitivity prediction that exceeds the half-life of 10 28 years. Specifically, improvements have been made in the understanding of production of scintillation photons and charge as well as of their transport and reconstruction in the detector. The more detailed knowledge of the detector construction has been paired with more assays for trace radioactivity in different materials. In particular, the use of custom electroformed copper is now incorporated in the design, leading to a substantial reduction in backgrounds from the intrinsic radioactivity of detector materials. Furthermore, a number of assumptions from previous sensitivity projections have gained further support from interim work validating the nEXO experiment concept. Together these improvements and updates suggest that the nEXO experiment will reach a half-life sensitivity of 1.35 × 10 28 yr at 90% confidence level in 10 years of data taking, covering the parameter space associated with the inverted neutrino mass ordering, along with a significant portion of the parameter space for the normal ordering scenario, for almost all nuclear matrixAbstract: The nEXO neutrinoless double beta (0 νββ ) decay experiment is designed to use a time projection chamber and 5000 kg of isotopically enriched liquid xenon to search for the decay in 136 Xe. Progress in the detector design, paired with higher fidelity in its simulation and an advanced data analysis, based on the one used for the final results of EXO-200, produce a sensitivity prediction that exceeds the half-life of 10 28 years. Specifically, improvements have been made in the understanding of production of scintillation photons and charge as well as of their transport and reconstruction in the detector. The more detailed knowledge of the detector construction has been paired with more assays for trace radioactivity in different materials. In particular, the use of custom electroformed copper is now incorporated in the design, leading to a substantial reduction in backgrounds from the intrinsic radioactivity of detector materials. Furthermore, a number of assumptions from previous sensitivity projections have gained further support from interim work validating the nEXO experiment concept. Together these improvements and updates suggest that the nEXO experiment will reach a half-life sensitivity of 1.35 × 10 28 yr at 90% confidence level in 10 years of data taking, covering the parameter space associated with the inverted neutrino mass ordering, along with a significant portion of the parameter space for the normal ordering scenario, for almost all nuclear matrix elements. The effects of backgrounds deviating from the nominal values used for the projections are also illustrated, concluding that the nEXO design is robust against a number of imperfections of the model. … (more)
- Is Part Of:
- Journal of physics. Volume 49:Number 1(2022)
- Journal:
- Journal of physics
- Issue:
- Volume 49:Number 1(2022)
- Issue Display:
- Volume 49, Issue 1 (2022)
- Year:
- 2022
- Volume:
- 49
- Issue:
- 1
- Issue Sort Value:
- 2022-0049-0001-0000
- Page Start:
- Page End:
- Publication Date:
- 2021-12-03
- Subjects:
- Xe-136 -- Monte Carlo simulations -- time-projection chambers -- neutrinoless double beta decay -- neutrinos
Nuclear physics -- Periodicals
Particles (Nuclear physics) -- Periodicals
Physique nucléaire -- Périodiques
Particules (Physique nucléaire) -- Périodiques
Kernfysica
Elementaire deeltjes
539.7 - Journal URLs:
- http://www.iop.org/Journals/jg ↗
http://iopscience.iop.org/0954-3899/ ↗
http://ioppublishing.org/ ↗ - DOI:
- 10.1088/1361-6471/ac3631 ↗
- Languages:
- English
- ISSNs:
- 0954-3899
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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