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Autore principale: Sato, Osamu
Natura: Preprint
Pubblicazione: 2024
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Accesso online:https://arxiv.org/abs/2410.22878
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author Sato, Osamu
author_facet Sato, Osamu
contents The FASER experiment studies the neutral decay products from LHC collision of 13.6 TeV centre of mass energy at 480m distant away. There could be Beyond Standard Model (BSM) particles such like dark photons or axion like particles etc.., and also high energy neutrinos. The neutrino target is an Emulsion Cloud Chamber with tungsten plates who can measure all three neutrino flavours with clear separation. Recently, FASER has measured the muon and electron neutrino cross-section with a nucleon as $ σ(ν_{e} + N) = 1.2^{+0.8}_{-0.7}\times 10^{-38} cm^{2}/GeV$ and $ σ(ν_μ + N) = 0.5 \pm{0.2}\times 10^{-38} cm^{2}/GeV$ in the unexplored energy region of a few hundred GeV to a few TeV so far.
format Preprint
id arxiv_https___arxiv_org_abs_2410_22878
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle High Energy Neutrino Studies in the forward direction with FASER experiment at the LHC
Sato, Osamu
High Energy Physics - Experiment
The FASER experiment studies the neutral decay products from LHC collision of 13.6 TeV centre of mass energy at 480m distant away. There could be Beyond Standard Model (BSM) particles such like dark photons or axion like particles etc.., and also high energy neutrinos. The neutrino target is an Emulsion Cloud Chamber with tungsten plates who can measure all three neutrino flavours with clear separation. Recently, FASER has measured the muon and electron neutrino cross-section with a nucleon as $ σ(ν_{e} + N) = 1.2^{+0.8}_{-0.7}\times 10^{-38} cm^{2}/GeV$ and $ σ(ν_μ + N) = 0.5 \pm{0.2}\times 10^{-38} cm^{2}/GeV$ in the unexplored energy region of a few hundred GeV to a few TeV so far.
title High Energy Neutrino Studies in the forward direction with FASER experiment at the LHC
topic High Energy Physics - Experiment
url https://arxiv.org/abs/2410.22878