Accès ouvert déclaré
2024
preprint
Search for quantum decoherence in neutrino oscillations with six detection units of KM3NeT/ORCA
S. Aiello, A. Albert, A.R Alhebsi, M. Alshamsi, S. Alves Garre, Antonio Ambrosone, F. Ameli, M. André, L. Aphecetche, M. Ardid, Salva Ardid, H. Atmani, J. Aublin, F. Badaracco, L. Bailly-Salins, Z Bardačová, B. Baret, A. Bariego-Quintana, Y. Becherini, M. Bendahman, F. Benfenati, M. Benhassi, M Bennani, David M. Benoit, E. Berbee, V. Bertin, S. Biagi, M. Boettcher, D. Bonanno, A. B. Bouasla, J. Boumaaza, M. Bouta, M.C. Bouwhuis, C. Bozza, R. M. Bozza, H. Brânzaş, F. Bretaudeau, M. Breuhaus, R. Bruijn, J. Brünner, Riccardo Bruno, E. Buis, R. Buompane, J. Busto, B. Caiffi, D. Calvo, A. Capone, F Carenini, V. Carretero, T. Cartraud, Paolo Castaldi, V. Cecchini, S. Celli, L Cerisy, M. Chabab, A. Chen, S Cherubini, T. Chiarusi, M Circella, R Cocimano, J. A. B. Coelho, A. Coleiro, Antonio Condorelli, R Coniglione, P. Coyle, A. Creusot, G Cuttone, R. Dallier, A. De Benedittis, Bianca de Martino, G. de Wasseige, Valentin Decoene, I. Del Rosso, L.S Di Mauro, I Di Palma, A. F. Díaz, D Diego-Tortosa, C. Distefano, Alba Domi, C. Donzaud, Damien Dornic, E. Drakopoulou, D. Drouhin, J.-G. Ducoin, R. Dvornický, T. Eberl, E Eckerová, A. Eddymaoui, T van Eeden, M. Eff, D. van Eijk, I. El Bojaddaini, S. El Hedri, V. Ellajosyula, G. Ferrara, M. D. Filipović, F. Filippini, D. Franciotti, L. Fusco, S. Gagliardini, T. Gal, J. García Méndez, C. Gatius Oliver, N. Geißelbrecht, Eliot Genton, H. Ghaddari, L Gialanella, B. K. Gibson, Elisa Giorgio, I. Goos, P. Goswami, Sara Rebecca Gozzini, R. Gracía, C. Guidi, B. Guillon, Manuel de la Cruz Gutierrez, Christian Haack, H van Haren, A Heijboer, Lars Hennig, J.J Hernández-Rey, W. Idrissi Ibnsalih, G Illuminati, D. Joly, M. de Jong, Paul de Jong, B. J. Jung, G Kistauri, Claudio Kopper, A. Kouchner, Y. Y. Kovalev, V. Kueviakoe, V. Kulikovskiy, R. Kvatadze, M. Labalme, R. Lahmann, M. Lamoureux, G. Larosa, C. Lastoria, A. Lazo, S. Le Stum, G. Lehaut, V. Lemaı̂tre, E. Leonora, N Lessing, G. Lévi, M. Lindsey Clark, F. Longhitano, Francesca Magnani, J Majumdar, Lara Malerba, F. Mamedov, J. Mańczak, Alberto Manfreda, M. Marconi, A. Margiotta, A. Marinelli, C. Markou, L. Martin, Massimo Mastrodicasa, S. Mastroianni, Jonathan Mauro, Gennaro Miele, P. Migliozzi, E. Migneco, M. L. Mitsou, C.M. Mollo, L. Morales-Gallegos, A. Moussa, I. Mozun Mateo, R. Muller, M. R. Musone, M. Musumeci, S. Navas, A Nayerhoda, C. A. Nicolau, B. Nkosi, B.Ó Fearraigh, V. Oliviero, A Orlando, E. Oukacha, G Papalashvili, Valentina Parisi, C. Pastore, S. Peña Martínez, M. Perrin‐Terrin, V. Pestel, R. Pestes, P. Piattelli, A. V. Plavin, C. Poirè, V. Popa, T. Pradier, J. Prado, S. Pulvirenti, N Randazzo, S. Razzaque, D. Real, A. Yu. Romanov, E. Ros, A Saina, F. Salesa Greus, A. Sánchez‐Losa, S. Sanfilippo, M. Sanguineti, D. Santonocito, P Sapienza, Julia A. Schnabel, J Schumann, J. Seneca, I. Sgura, R Shanidze, Ankur Sharma, Yu. Shitov, F. Šimkovic, A. Simonelli, A Sinopoulou, B. Spisso, M. Spurio, D Stavropoulos, I. Štekl, M. Taiuti, Y Tayalati, H Thiersen, S Thoudam, B. Trocmé, V Tsourapis, A. Tudorache, E. Tzamariudaki, A. Ukleja, A. Vacheret, V. Valsecchi, V. Van Elewyck, G. Vannoye, G. Vasileiadis, F. Vazquez de Sola, A. Veutro, S. Viola, D. Vivolo, A. van Vliet, E de Wolf, Isabelle Lhenry-Yvon, S Zavatarelli, A Zegarelli, Daniele Zito, J. Zúñiga, N. Zywucka
0Citations signalées, ce qui n’est pas une note de qualité
11Institutions déclarées
1Pays d’affiliation déclarés
Rattachement africain : fr.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Neutrinos described as an open quantum system may interact with the environment which introduces stochastic perturbations to their quantum phase. This mechanism leads to a loss of coherence along the propagation of the neutrino $-$ a phenomenon commonly referred to as decoherence $-$ and ultimately, to a modification of the oscillation probabilities. Fluctuations in space-time, as envisaged by various theories of quantum gravity, are a potential candidate for a decoherence-inducing environment. Consequently, the search for decoherence provides a rare opportunity to investigate quantum gravitational effects which are usually beyond the reach of current experiments. In this work, quantum decoherence effects are searched for in neutrino data collected by the KM3NeT/ORCA detector from January 2020 to November 2021. The analysis focuses on atmospheric neutrinos within the energy range of a few GeV to $100\,\mathrm{GeV}$. Adopting the open quantum system framework, decoherence is described in a phenomenological manner with the strength of the effect given by the parameters $Γ_{21}$ and $Γ_{31}$. Following previous studies, a dependence of the type $Γ_{ij} \propto (E/E_0)^n$ on the neutrino energy is assumed and the cases $n = -2,-1$ are explored. No significant deviation with respect to the standard oscillation hypothesis is observed. Therefore, $90\,\%$ CL upper limits are estimated as $Γ_{21} < 4.6\cdot 10^{-21}\,$GeV and $Γ_{31} < 8.4\cdot 10^{-21}\,$GeV for $n = -2$, and $Γ_{21} < 1.9\cdot 10^{-22}\,$GeV and $Γ_{31} < 2.7\cdot 10^{-22}\,$GeV for $n = -1$, respectively.
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Les sujets associés
Neutrino Physics ResearchAtomic and Subatomic Physics ResearchRadiation Detection and Scintillator Technologies