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Probing invisible neutrino decay with the first six detection units of KM3NeT/ORCA

Authors :
Aiello, S.
Albert, A.
Alhebsi, A. R.
Alshamsi, M.
Garre, S. Alves
Ambrosone, A.
Ameli, F.
Andre, M.
Aphecetche, L.
Ardid, M.
Ardid, S.
Aublin, J.
Badaracco, F.
Bailly-Salins, L.
Bardačová, Z.
Baret, B.
Bariego-Quintana, A.
Becherini, Y.
Bendahman, M.
Gualandi, F. Benfenati
Benhassi, M.
Bennani, M.
Benoit, D. M.
Berbee, E.
Bertin, V.
Biagi, S.
Boettcher, M.
Bonanno, D.
Bouasla, A. B.
Boumaaza, J.
Bouta, M.
Bouwhuis, M.
Bozza, C.
Bozza, R. M.
Brânzaş, H.
Bretaudeau, F.
Breuhaus, M.
Bruijn, R.
Brunner, J.
Bruno, R.
Buis, E.
Buompane, R.
Busto, J.
Caiffi, B.
Calvo, D.
Capone, A.
Carenini, F.
Carretero, V.
Cartraud, T.
Castaldi, P.
Cecchini, V.
Celli, S.
Cerisy, L.
Chabab, M.
Chen, A.
Cherubini, S.
Chiarusi, T.
Circella, M.
Clark, R.
Cocimano, R.
Coelho, J. A. B.
Coleiro, A.
Condorelli, A.
Coniglione, R.
Coyle, P.
Creusot, A.
Cuttone, G.
Dallier, R.
De Benedittis, A.
De Wasseige, G.
Decoene, V.
Deguire, P.
Del Rosso, I.
Di Mauro, L. S.
Di Palma, I.
Díaz, A. F.
Diego-Tortosa, D.
Distefano, C.
Domi, A.
Donzaud, C.
Dornic, D.
Drakopoulou, E.
Drouhin, D.
Ducoin, J. -G.
Duverne, P.
Dvornický, R.
Eberl, T.
Eckerová, E.
Eddymaoui, A.
van Eeden, T.
Eff, M.
van Eijk, D.
Bojaddaini, I. El
Hedri, S. El
Mentawi, S. El
Ellajosyula, V.
Enzenhöfer, A.
Ferrara, G.
Filipović, M. D.
Filippini, F.
Franciotti, D.
Fusco, L. A.
Gagliardini, S.
Gal, T.
Méndez, J. García
Soto, A. Garcia
Oliver, C. Gatius
Geißelbrecht, N.
Genton, E.
Ghaddari, H.
Gialanella, L.
Gibson, B. K.
Giorgio, E.
Goos, I.
Goswami, P.
Gozzini, S. R.
Gracia, R.
Guidi, C.
Guillon, B.
Gutiérrez, M.
Haack, C.
van Haren, H.
Heijboer, A.
Hennig, L.
Hernández-Rey, J. J.
Idrissi, A.
Ibnsalih, W. Idrissi
Illuminati, G.
Joly, D.
de Jong, M.
de Jong, P.
Jung, B. J.
Kalaczyński, P.
Kikvadze, V.
Kistauri, G.
Kopper, C.
Kouchner, A.
Kovalev, Y. Y.
Krupa, L.
Kueviakoe, V.
Kulikovskiy, V.
Kvatadze, R.
Labalme, M.
Lahmann, R.
Lamoureux, M.
Larosa, G.
Lastoria, C.
Lazar, J.
Lazo, A.
Stum, S. Le
Lehaut, G.
Lemaître, V.
Leonora, E.
Lessing, N.
Levi, G.
Clark, M. Lindsey
Longhitano, F.
Magnani, F.
Majumdar, J.
Malerba, L.
Mamedov, F.
Manfreda, A.
Manousakis, A.
Marconi, M.
Margiotta, A.
Marinelli, A.
Markou, C.
Martin, L.
Mastrodicasa, M.
Mastroianni, S.
Mauro, J.
Mehta, K. C. K.
Meskar, A.
Miele, G.
Migliozzi, P.
Migneco, E.
Mitsou, M. L.
Mollo, C. M.
Morales-Gallegos, L.
Moussa, A.
Mateo, I. Mozun
Muller, R.
Musone, M. R.
Musumeci, M.
Navas, S.
Nayerhoda, A.
Nicolau, C. A.
Nkosi, B.
Fearraigh, B. Ó
Oliviero, V.
Orlando, A.
Oukacha, E.
Paesani, D.
González, J. Palacios
Papalashvili, G.
Parisi, V.
Parmar, A.
Gomez, E. J. Pastor
Pastore, C.
Păun, A. M.
Păvălaş, G. E.
Martínez, S. Peña
Perrin-Terrin, M.
Pestel, V.
Pestes, R.
Piattelli, P.
Plavin, A.
Poiré, C.
Popa, V.
Pradier, T.
Prado, J.
Pulvirenti, S.
Quiroz-Rangel, C. A.
Randazzo, N.
Ratnani, A.
Razzaque, S.
Rea, I. C.
Real, D.
Riccobene, G.
Romanov, A.
Ros, E.
Săina, A.
Greus, F. Salesa
Samtleben, D. F. E.
Losa, A. Sánchez
Sanfilippo, S.
Sanguineti, M.
Santonocito, D.
Sapienza, P.
Scarnera, M.
Schnabel, J.
Schumann, J.
Schutte, H. M.
Seneca, J.
Sennan, N.
Sevle, P.
Sgura, I.
Shanidze, R.
Sharma, A.
Shitov, Y.
Šimkovic, F.
Simonelli, A.
Sinopoulou, A.
Spisso, B.
Spurio, M.
Stavropoulos, D.
Štekl, I.
Taiuti, M.
Takadze, G.
Tayalati, Y.
Thiersen, H.
Thoudam, S.
Melo, I. Tosta e
Trocmé, B.
Tsourapis, V.
Tudorache, A.
Tzamariudaki, E.
Ukleja, A.
Vacheret, A.
Valsecchi, V.
Van Elewyck, V.
Vannoye, G.
Vasileiadis, G.
de Sola, F. Vazquez
Veutro, A.
Viola, S.
Vivolo, D.
van Vliet, A.
de Wolf, E.
Lhenry-Yvon, I.
Zavatarelli, S.
Zegarelli, A.
Zito, D.
Zornoza, J. D.
Zúñiga, J.
Zywucka, N.
Publication Year :
2025

Abstract

In the era of precision measurements of neutrino oscillation parameters, it is necessary for experiments to disentangle discrepancies that may indicate physics beyond the Standard Model in the neutrino sector. KM3NeT/ORCA is a water Cherenkov neutrino detector under construction and anchored at the bottom of the Mediterranean Sea. The detector is designed to study the oscillations of atmospheric neutrinos and determine the neutrino mass ordering. This paper focuses on the initial configuration of ORCA, referred to as ORCA6, which comprises six out of the foreseen 115 detection units of photosensors. A high-purity neutrino sample was extracted during 2020 and 2021, corresponding to an exposure of 433 kton-years. This sample is analysed following a binned log-likelihood approach to search for invisible neutrino decay, in a three-flavour neutrino oscillation scenario, where the third neutrino mass state $\nu_3$ decays into an invisible state, e.g. a sterile neutrino. The resulting best fit of the invisible neutrino decay parameter is $\alpha_3 = 0.92^{+1.08}_{-0.57}\times 10^{-4}~\mathrm{eV^2}$, corresponding to a scenario with $\theta_{23}$ in the second octant and normal neutrino mass ordering. The results are consistent with the Standard Model, within a $2.1\,\sigma$ interval.<br />Comment: 20 pages, 8 figures

Subjects

Subjects :
High Energy Physics - Experiment

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2501.11336
Document Type :
Working Paper