Accès ouvert déclaré
2026
article
Study of the Run-3 muon flux at the SND@LHC experiment
D. Abbaneo, S. Ahmad, R. Albanese, A. Alexandrov, F. Alicante, Fabrizio Aloschi, K. Androsov, A. Anokhina, Luciano Arellano, C. Asawatangtrakuldee, M. Ayala-Torres, N. Bangaru, C. Battilana, A. Bay, C. Betancourt, D. Bick, R. Biswas, A. Blanco, V. Boccia, M. Bogomilov, D. Bonacorsi, W. Bonivento, P. Bordalo, Alexey Boyarsky, S. Buontempo, T. Camporesi, V. Canale, D. Centanni, F. Cerutti, A. Cervelli, V. Chariton, M. Chernyavskiy, A. Chiuchiolo, Ki-Young Choi, F. Cindolo, M. Climescu, G. M. Dallavalle, N. D’Ambrosio, Daniele Davino, R. De Asmundis, P. De Bryas Dexmiers D‘archiac, G. De Lellis, M. de Magistris, G. Del Giudice, G. De Marzi, A. De Roeck, S. De Pasquale, A. De Rújula, M.A. Diaz Gutierrez, A. Di Crescenzo, Cristiana Di Cristo, D. Di Ferdinando, C. Dinç, I. Dionisov, R. Donà, O. Durhan, D. Fasanella, Oreste Fecarotta, M. Ferrillo, A. Fiorillo, N. Funicello, R. Fresa, D. Gigi, G. Galati, Katia Genovese, V. Giordano, A. Golutvin, E. Graverini, C. Guandalini, L. Guiducci, A. M. Guler, V. Guliaeva, G. Haefeli, C. Hagner, Juan Carlos Helo, E. van Herwijnen, S. Ilieva, Sebastian Alonso Infante Cabanas, Angelo Infantino, A. Iuliano, Anni Kauniskangas, E. Khalikov, S. H. Kim, Yeong Gyun Kim, G. Klioutchnikov, M. Komatsu, N. S. Konovalova, S. Kuleshov, H. Lacker, I. Landi, O. Lantwin, F. Lasagni Manghi, A. Lauria, Kang Young Lee, K. S. Lee, W.-C. Lee, Giuseppe Lerner, V. P. Loschiavo, Anna Mascellani, M. Majstorovic, Filippo Mei, Andrea Miano, Oleksii Mikulenko, M.C. Montesi, D. Morozova, L. Mozzina, F. L. Navarria, Waraporn Nuntiyakul, K. Obayashi, S. Ogawa, N. Okateva, Maksym Ovchynnikov, Giulia Paggi, A. Perrotta, D. Podgrudkov, N. Polukhina, F. Primavera, Andrea Prota, A. Quercia, S. Ramos, A. Reghunath, T. Roganova, F. Ronchetti, N. Rossolino, T. Rovelli, Oleg Ruchayskiy, T. Ruf, Zh. T. Sadykov, M. Samoilov, Valentino Scalera, W. Schmidt‐Parzefall, O. Schneider, G. Sekhniaidze, Alexandra-Gabriela Şerban, N. Serra, Mikhail Shaposhnikov, V. Shevchenko, T. Shchedrina, L. Shchutska, H. Shibuya, C. Silano, Gian Piero Siroli, G. Sirri, T. E. Smith, G. Soares, J. Y. Sohn, Orlando Javier Soto Sandoval, M. Spurio, Н. И. Старков, J. Steggemann, A. Tarek, J. Tesarek, Inar Timiryasov, V. Tioukov, C. Trippl, E. Ursov, G. Vankova-Kirilova, G. A. Vasquez, V. Verguilov, N. Leonardo, C. Vilela, R. Wanke, Saya Yamamoto, Z. C. Yang, C. Yazici, S.M. Yoo, C.S. Yoon, E. Zaffaroni, J. A. Zamora Saa
0Citations signalées — pas une note de qualité
45Institutions déclarées
20Pays d’affiliation déclarés
Résumé fourni par la source
Abstract Long-range muons produced in proton–proton collisions at the ATLAS interaction point constitute the primary background for neutrino interaction searches at the SND@LHC experiment. This work presents a comprehensive characterization of the muon flux throughout LHC Run-3, benchmarking Monte Carlo simulations against experimental measurements. Measured and simulated muon rates agree within 10–15% across all Run-3 configurations. Following the substantial background increase in 2024 as a result of a beam optics change, the reversion to nominal optics in 2025 did not restore the 2022–2023 levels due to the unprecedented adoption of horizontal crossing in ATLAS. As indicated by simulation results, horizontal crossing enhanced the contribution of high-angle muons originating from diffractive proton losses in the LHC Dispersion Suppressor region. Their identification enabled the design of mitigation strategies that were experimentally validated. The simulation framework was also applied to the future high-luminosity LHC configuration, resulting in a considerable muon rate rise, driven by both the planned luminosity increase and the enlarged magnet aperture. Nevertheless, the upgrade from emulsion films to silicon vertex detectors will preserve the efficiency of the experiment even in such a high-rate environment.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Study of the Run-3 muon flux at the SND@LHC experiment
- Date Crossref
- 29/06/2026
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.
Institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Sujets associés
Particle Detector Development and PerformanceParticle physics theoretical and experimental studiesNeutrino Physics Research