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FASER: ForwArd Search ExpeRiment at the LHC
FASER, the ForwArd Search ExpeRiment, is a proposed experiment dedicated to searching for light, extremely weakly-interacting particles at the LHC. Such particles may be produced in the LHC's high-energy collisions in large numbers in the far-forward region and then travel long distances throug...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2019
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/2665085 |
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author | Ariga, Akitaka Ariga, Tomoko Boyd, Jamie Cadoux, Franck Casper, David W. Favre, Yannick Feng, Jonathan L. Ferrere, Didier Galon, Iftah Gonzalez-Sevilla, Sergio Hsu, Shih-Chieh Iacobucci, Giuseppe Kajomovitz, Enrique Kling, Felix Kuehn, Susanne Levinson, Lorne Otono, Hidetoshi Petersen, Brian Sato, Osamu Schott, Matthias Sfyrla, Anna Smolinsky, Jordan Soffa, Aaron M. Takubo, Yosuke Torrence, Eric Trojanowski, Sebastian Zhang, Gang |
author_facet | Ariga, Akitaka Ariga, Tomoko Boyd, Jamie Cadoux, Franck Casper, David W. Favre, Yannick Feng, Jonathan L. Ferrere, Didier Galon, Iftah Gonzalez-Sevilla, Sergio Hsu, Shih-Chieh Iacobucci, Giuseppe Kajomovitz, Enrique Kling, Felix Kuehn, Susanne Levinson, Lorne Otono, Hidetoshi Petersen, Brian Sato, Osamu Schott, Matthias Sfyrla, Anna Smolinsky, Jordan Soffa, Aaron M. Takubo, Yosuke Torrence, Eric Trojanowski, Sebastian Zhang, Gang |
author_sort | Ariga, Akitaka |
collection | CERN |
description | FASER, the ForwArd Search ExpeRiment, is a proposed experiment dedicated to searching for light, extremely weakly-interacting particles at the LHC. Such particles may be produced in the LHC's high-energy collisions in large numbers in the far-forward region and then travel long distances through concrete and rock without interacting. They may then decay to visible particles in FASER, which is placed 480 m downstream of the ATLAS interaction point. In this work, we describe the FASER program. In its first stage, FASER is an extremely compact and inexpensive detector, sensitive to decays in a cylindrical region of radius R = 10 cm and length L = 1.5 m. FASER is planned to be constructed and installed in Long Shutdown 2 and will collect data during Run 3 of the 14 TeV LHC from 2021-23. If FASER is successful, FASER 2, a much larger successor with roughly R ~ 1 m and L ~ 5 m, could be constructed in Long Shutdown 3 and collect data during the HL-LHC era from 2026-35. FASER and FASER 2 have the potential to discover dark photons, dark Higgs bosons, heavy neutral leptons, axion-like particles, and many other long-lived particles, as well as provide new information about neutrinos, with potentially far-ranging implications for particle physics and cosmology. We describe the current status, anticipated challenges, and discovery prospects of the FASER program. |
id | cern-2665085 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
record_format | invenio |
spelling | cern-26650852021-12-21T13:14:30Zhttp://cds.cern.ch/record/2665085engAriga, AkitakaAriga, TomokoBoyd, JamieCadoux, FranckCasper, David W.Favre, YannickFeng, Jonathan L.Ferrere, DidierGalon, IftahGonzalez-Sevilla, SergioHsu, Shih-ChiehIacobucci, GiuseppeKajomovitz, EnriqueKling, FelixKuehn, SusanneLevinson, LorneOtono, HidetoshiPetersen, BrianSato, OsamuSchott, MatthiasSfyrla, AnnaSmolinsky, JordanSoffa, Aaron M.Takubo, YosukeTorrence, EricTrojanowski, SebastianZhang, GangFASER: ForwArd Search ExpeRiment at the LHCphysics.ins-detDetectors and Experimental Techniqueshep-phParticle Physics - Phenomenologyhep-exParticle Physics - ExperimentFASER, the ForwArd Search ExpeRiment, is a proposed experiment dedicated to searching for light, extremely weakly-interacting particles at the LHC. Such particles may be produced in the LHC's high-energy collisions in large numbers in the far-forward region and then travel long distances through concrete and rock without interacting. They may then decay to visible particles in FASER, which is placed 480 m downstream of the ATLAS interaction point. In this work, we describe the FASER program. In its first stage, FASER is an extremely compact and inexpensive detector, sensitive to decays in a cylindrical region of radius R = 10 cm and length L = 1.5 m. FASER is planned to be constructed and installed in Long Shutdown 2 and will collect data during Run 3 of the 14 TeV LHC from 2021-23. If FASER is successful, FASER 2, a much larger successor with roughly R ~ 1 m and L ~ 5 m, could be constructed in Long Shutdown 3 and collect data during the HL-LHC era from 2026-35. FASER and FASER 2 have the potential to discover dark photons, dark Higgs bosons, heavy neutral leptons, axion-like particles, and many other long-lived particles, as well as provide new information about neutrinos, with potentially far-ranging implications for particle physics and cosmology. We describe the current status, anticipated challenges, and discovery prospects of the FASER program.arXiv:1901.04468UCI-TR-2019-01KYUSHU-RCAPP-2018-08oai:cds.cern.ch:26650852019 |
spellingShingle | physics.ins-det Detectors and Experimental Techniques hep-ph Particle Physics - Phenomenology hep-ex Particle Physics - Experiment Ariga, Akitaka Ariga, Tomoko Boyd, Jamie Cadoux, Franck Casper, David W. Favre, Yannick Feng, Jonathan L. Ferrere, Didier Galon, Iftah Gonzalez-Sevilla, Sergio Hsu, Shih-Chieh Iacobucci, Giuseppe Kajomovitz, Enrique Kling, Felix Kuehn, Susanne Levinson, Lorne Otono, Hidetoshi Petersen, Brian Sato, Osamu Schott, Matthias Sfyrla, Anna Smolinsky, Jordan Soffa, Aaron M. Takubo, Yosuke Torrence, Eric Trojanowski, Sebastian Zhang, Gang FASER: ForwArd Search ExpeRiment at the LHC |
title | FASER: ForwArd Search ExpeRiment at the LHC |
title_full | FASER: ForwArd Search ExpeRiment at the LHC |
title_fullStr | FASER: ForwArd Search ExpeRiment at the LHC |
title_full_unstemmed | FASER: ForwArd Search ExpeRiment at the LHC |
title_short | FASER: ForwArd Search ExpeRiment at the LHC |
title_sort | faser: forward search experiment at the lhc |
topic | physics.ins-det Detectors and Experimental Techniques hep-ph Particle Physics - Phenomenology hep-ex Particle Physics - Experiment |
url | http://cds.cern.ch/record/2665085 |
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