Studying neutrinos at the LHC: FASER and its impact to the cosmic-ray physics

التفاصيل البيبلوغرافية
العنوان: Studying neutrinos at the LHC: FASER and its impact to the cosmic-ray physics
المؤلفون: Michaela Queitsch-Maitland, Mitsuhiro Nakamura, Shih-Chieh Hsu, Gang Zhan, Umut Kose, Ondrej Theiner, Yannick Favre, Felix Kling, M. T. Prim, Hiroki Rokujo, Sergio Gonzalez-Sevilla, Brian Petersen, Charlotte Cavanagh, Claire Antel, Carlo Enrico Pandini, Helena Lefebvre, F. Pietropaolo, Lydia Brenner, Zhen Hu, Stephen Gibson, Florian Urs Bernlochner, Di Wang, Sebastian Trojanowski, Yosuke Takubo, Laurie Nevay, Tobias Boeckh, Deion Fellers, Carl Gwilliam, Susanne Kuehn, Marzio Nessi, Didier Ferrere, Josh Mcfayden, Benedikt Vormwald, Tomohiro Inada, John Spencer, Lorne Levinson, Hidetoshi Otono, Paola Scampoli, Giuseppe Iacobucci, Akitaka Ariga, Ke Li, Hao Pang, Anna Sfyrla, Enrique Kajomovitz, Yoav Afik, S. Meehan, Monica D'Onofrio, Dimitar Mladenov, Francesco Cerutti, Chiara Magliocca, Tomoko Ariga, Andrea Coccaro, Sune Jakobsen, Lorenzo Paolozzi, Jamie Boyd, Savannah Shively, Franck Cadoux, Jinfeng Liu, Candan Dozen, Osamu Sato, Toshiyuki Nakano, Filippo Resnati, Eric Torrence, Friedemann Neuhaus, Kristof Schmieden, Serhan Tufanli, Matthias Schott, Jakob Salfeld-Nebgen, Xin Chen, Henso Abreu, David William Casper
المصدر: Proceedings of 37th International Cosmic Ray Conference — PoS(ICRC2021)
بيانات النشر: Sissa Medialab, 2021.
سنة النشر: 2021
مصطلحات موضوعية: Physics, Astrophysics and Astronomy, Particle physics, Large Hadron Collider, Physics::Instrumentation and Detectors, Astrophysics::High Energy Astrophysical Phenomena, High Energy Physics::Phenomenology, High Energy Physics::Experiment, Cosmic ray, Neutrino
الوصف: Studies of high energy proton interactions have been basic inputs to understand the cosmic-ray spectra observed on the earth. Yet, the experimental knowledge with controlled beams has been limited. In fact, uncertainties of the forward hadron production are very large due to the lack of experimental data. The FASER experiment is proposed to measure particles, such as neutrinos and hypothetical dark-sector particles, at the forward location of the 14 TeV proton-proton collisions at the LHC. As it corresponds to 100-PeV proton interactions in fixed target mode, a precise measurement by FASER would provide information relevant for PeV-scale cosmic rays. By studying three flavor neutrinos with the dedicated neutrino detector (FASER$\nu$), FASER will lead to a quantitative understanding of prompt neutrinos, which is an important background towards the astrophysical neutrino observation by neutrino telescopes such as IceCube. In particular, the electron and tau neutrinos have strong links with charmed hadron production. And, the FASER measurements may also shed light on the unresolved muon puzzle at the high energy. FASER is going to start taking data in 2022. We expect about 8000 numu, 1300 nue and 20 nutau CC interactions at the TeV energy scale during Run 3 of the LHC operation (2022-2024) with a 1.1 tons emulsion-based neutrino detector. We report here the overview and prospect of the FASER experiment in relation to the cosmic-ray physics, together with the first LHC neutrino candidates that we caught in the pilot run held in 2018.
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::1322b7d75c9d38c522a40385c3f78691
https://doi.org/10.22323/1.395.1025
حقوق: OPEN
رقم الأكسشن: edsair.doi.dedup.....1322b7d75c9d38c522a40385c3f78691
قاعدة البيانات: OpenAIRE