Accès ouvert déclaré
2023
preprint
Event-by-Event Direction Reconstruction of Solar Neutrinos in a High Light-Yield Liquid Scintillator
Mark R. Anderson, S. Andringa, J. Rodrigues Antunes, M. Askins, D. J. Auty, A. Bacon, Joy Don Baker, N. Barros, F. Barão, R. Bayes, E. W. Beier, T. S. Bezerra, A. Białek, S. D. Biller, E. Caden, M. Chen, S. H. Cheng, B. T. Cleveland, D. Cookman, J. Corning, M. A. Cox, R. Dehghani, J. Deloye, M. M. Depatie, F. Di Lodovico, J. Dittmer, K. H. Dixon, E. Falk, N. Fatemighomi, R. Ford, A. Gaur, O. I. Ganzálaz-Reina, D. Gooding, C. Grant, J. E. Grove, S. Hall, A. L. Hallin, W. J. Heintzelman, R. L. Helmer, C. Hewitt, B. Hreljac, Virginia J. Howard, Jia Hu, R. Hunt-Stokes, Safeer Hussain, A. S. Inácio, C. Jillings, S. Kaluzienski, T. Kaptanoglu, P. Khaghani, H. Khan, J. R. Klein, L. L. Kormos, B. Krar, C. Kraus, C. B. Krauss, Tereza Kroupova, C. Raymond Lake, L. Lebanowski, J. Lee, C. Lefebvra, Yen-Hsun Lin, V. Lozza, Man Luo, A. Maio, S. Manecki, J. Maneira, R. D. Martin, N. McCauley, A. B. McDonald, C. Mills, G.M. Milton, I. Morton-Blake, Muhammad Mubasher, Daniel A. Morris, S. Naugle, L. J. Nolan, H. M. O'Keeffe, G. D. Orebi Gann, J. Page, K. Paleshi, W. Parker, J. Paton, S. J. M. Peeters, L. Pickard, P. Ravi, A. Reichold, S. Riccetto, M. Rigan, J. Rose, R. Rosero, J. Rumleskie, I. Semenec, P. Skensvard, M. Smiley, J. R. Smith, R. Svoboda, B. Tam, J. C-L. Tseng, S. Valder, E. Vázquez-Jáuregui, C.J. Virtue, J. Wang, M. Ward, J. R. Wilson, J. D. Wilson, A. Wright, S. Yang, M. Yeh, Ziping Ye, S. Yu, Y. Zhang, Κ. Zuber, A. Zummo
1Citations signalées, ce qui n’est pas une note de qualité
11Institutions déclarées
5Pays d’affiliation déclarés
Rattachement africain : gb, no, ca, pt, us.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Parallel Talk presented at the XX International Workshop on Neutrino Telescopes - Venice 23-27 October 2023 Abstract: SNO+ is a large multipurpose experiment located in the SNOLAB underground laboratory in Sudbury, Canada. With an extensive physics programme focused on many neutrino physics topics and nucleon decay searches, the ultimate goal of SNO+ is the search for the neutrinoless double beta decay of 130Te. After a commissioning phase with water as the target medium, whose data allowed measurements of solar neutrinos and the detection of reactor antineutrinos, SNO+ is now filled with 780 tonnes of liquid scintillator. The higher light yield of the scintillator enhances the physics capabilities of the experiment, and the physics programincluding reactor, geo and solar neutrinos is underway. The data is also being used to quantify backgrounds and understand the detector response in preparation for the neutrinoless double beta decay search, when the scintillator is loaded with tellurium at 0.5% by weight. This talk will highlight the recent results of the SNO+ experiment and discuss the prospects for the neutrinoless double beta decay searches.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
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Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Neutrino Physics ResearchDark Matter and Cosmic PhenomenaRadiation Detection and Scintillator Technologies