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Technical Proposal for FASER: ForwArd Search ExpeRiment at the LHC

FASER is a proposed small and inexpensive experiment designed to search for light, weakly-interacting particles during Run 3 of the LHC from 2021-23. Such particles may be produced in large numbers along the beam collision axis, travel for hundreds of meters without interacting, and then decay to s...

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Autores principales: Ariga, Akitaka, Ariga, Tomoko, Boyd, Jamie, Cadoux, Franck, Casper, David W., Cerutti, Francesco, Danzeca, Salvatore, Dougherty, Liam, Favre, Yannick, Feng, Jonathan L., Ferrere, Didier, Gall, Jonathan, Galon, Iftah, Gonzalez-Sevilla, Sergio, Hsu, Shih-Chieh, Iacobucci, Giuseppe, Kajomovitz, Enrique, Kling, Felix, Kuehn, Susanne, Lamont, Mike, Levinson, Lorne, Otono, Hidetoshi, Osborne, John, Petersen, Brian, Sato, Osamu, Sabaté-Gilarte, Marta, Schott, Matthias, Sfyrla, Anna, Smolinsky, Jordan, Soffa, Aaron M., Takubo, Yosuke, Thonet, Pierre, Torrence, Eric, Trojanowski, Sebastian, Zhang, Gang
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:http://cds.cern.ch/record/2651328
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author Ariga, Akitaka
Ariga, Tomoko
Boyd, Jamie
Cadoux, Franck
Casper, David W.
Cerutti, Francesco
Danzeca, Salvatore
Dougherty, Liam
Favre, Yannick
Feng, Jonathan L.
Ferrere, Didier
Gall, Jonathan
Galon, Iftah
Gonzalez-Sevilla, Sergio
Hsu, Shih-Chieh
Iacobucci, Giuseppe
Kajomovitz, Enrique
Kling, Felix
Kuehn, Susanne
Lamont, Mike
Levinson, Lorne
Otono, Hidetoshi
Osborne, John
Petersen, Brian
Sato, Osamu
Sabaté-Gilarte, Marta
Schott, Matthias
Sfyrla, Anna
Smolinsky, Jordan
Soffa, Aaron M.
Takubo, Yosuke
Thonet, Pierre
Torrence, Eric
Trojanowski, Sebastian
Zhang, Gang
author_facet Ariga, Akitaka
Ariga, Tomoko
Boyd, Jamie
Cadoux, Franck
Casper, David W.
Cerutti, Francesco
Danzeca, Salvatore
Dougherty, Liam
Favre, Yannick
Feng, Jonathan L.
Ferrere, Didier
Gall, Jonathan
Galon, Iftah
Gonzalez-Sevilla, Sergio
Hsu, Shih-Chieh
Iacobucci, Giuseppe
Kajomovitz, Enrique
Kling, Felix
Kuehn, Susanne
Lamont, Mike
Levinson, Lorne
Otono, Hidetoshi
Osborne, John
Petersen, Brian
Sato, Osamu
Sabaté-Gilarte, Marta
Schott, Matthias
Sfyrla, Anna
Smolinsky, Jordan
Soffa, Aaron M.
Takubo, Yosuke
Thonet, Pierre
Torrence, Eric
Trojanowski, Sebastian
Zhang, Gang
author_sort Ariga, Akitaka
collection CERN
description FASER is a proposed small and inexpensive experiment designed to search for light, weakly-interacting particles during Run 3 of the LHC from 2021-23. Such particles may be produced in large numbers along the beam collision axis, travel for hundreds of meters without interacting, and then decay to standard model particles. To search for such events, FASER will be located 480m downstream of the ATLAS IP in the unused service tunnel TI12 and be sensitive to particles that decay in a cylindrical volume with radius R= 10cm and length L = 1.5m. FASER will complement the LHC's existing physics program, extending its discovery potential to a host of new, light particles, with potentially far-reaching implications for particle physics and cosmology. This document describes the technical details of the FASER detector components: the magnets, the tracker, the scintillator system, and the calorimeter, as well as the trigger and readout system. The preparatory work that is needed to install and operate the detector, including civil engineering, transport, and integration with various services is also presented. The information presented includes preliminary cost estimates for the detector components and the infrastructure work, as well as a timeline for the design, construction, and installation of the experiment.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-26513282021-12-21T14:08:31Zhttp://cds.cern.ch/record/2651328engAriga, AkitakaAriga, TomokoBoyd, JamieCadoux, FranckCasper, David W.Cerutti, FrancescoDanzeca, SalvatoreDougherty, LiamFavre, YannickFeng, Jonathan L.Ferrere, DidierGall, JonathanGalon, IftahGonzalez-Sevilla, SergioHsu, Shih-ChiehIacobucci, GiuseppeKajomovitz, EnriqueKling, FelixKuehn, SusanneLamont, MikeLevinson, LorneOtono, HidetoshiOsborne, JohnPetersen, BrianSato, OsamuSabaté-Gilarte, MartaSchott, MatthiasSfyrla, AnnaSmolinsky, JordanSoffa, Aaron M.Takubo, YosukeThonet, PierreTorrence, EricTrojanowski, SebastianZhang, GangTechnical Proposal for FASER: ForwArd Search ExpeRiment at the LHCDetectors and Experimental TechniquesParticle Physics - ExperimentParticle Physics - PhenomenologyFASER is a proposed small and inexpensive experiment designed to search for light, weakly-interacting particles during Run 3 of the LHC from 2021-23. Such particles may be produced in large numbers along the beam collision axis, travel for hundreds of meters without interacting, and then decay to standard model particles. To search for such events, FASER will be located 480m downstream of the ATLAS IP in the unused service tunnel TI12 and be sensitive to particles that decay in a cylindrical volume with radius R= 10cm and length L = 1.5m. FASER will complement the LHC's existing physics program, extending its discovery potential to a host of new, light particles, with potentially far-reaching implications for particle physics and cosmology. This document describes the technical details of the FASER detector components: the magnets, the tracker, the scintillator system, and the calorimeter, as well as the trigger and readout system. The preparatory work that is needed to install and operate the detector, including civil engineering, transport, and integration with various services is also presented. The information presented includes preliminary cost estimates for the detector components and the infrastructure work, as well as a timeline for the design, construction, and installation of the experiment.FASER is a proposed small and inexpensive experiment designed to search for light, weakly-interacting particles during Run 3 of the LHC from 2021-23. Such particles may be produced in large numbers along the beam collision axis, travel for hundreds of meters without interacting, and then decay to standard model particles. To search for such events, FASER will be located 480 m downstream of the ATLAS IP in the unused service tunnel TI12 and be sensitive to particles that decay in a cylindrical volume with radius R=10 cm and length L=1.5 m. FASER will complement the LHC's existing physics program, extending its discovery potential to a host of new, light particles, with potentially far-reaching implications for particle physics and cosmology. This document describes the technical details of the FASER detector components: the magnets, the tracker, the scintillator system, and the calorimeter, as well as the trigger and readout system. The preparatory work that is needed to install and operate the detector, including civil engineering, transport, and integration with various services is also presented. The information presented includes preliminary cost estimates for the detector components and the infrastructure work, as well as a timeline for the design, construction, and installation of the experiment.arXiv:1812.09139CERN-LHCC-2018-036LHCC-P-013UCI-TR-2018-22KYUSHU-RCAPP-2018-07LHCC-P-013oai:cds.cern.ch:26513282018-12-14
spellingShingle Detectors and Experimental Techniques
Particle Physics - Experiment
Particle Physics - Phenomenology
Ariga, Akitaka
Ariga, Tomoko
Boyd, Jamie
Cadoux, Franck
Casper, David W.
Cerutti, Francesco
Danzeca, Salvatore
Dougherty, Liam
Favre, Yannick
Feng, Jonathan L.
Ferrere, Didier
Gall, Jonathan
Galon, Iftah
Gonzalez-Sevilla, Sergio
Hsu, Shih-Chieh
Iacobucci, Giuseppe
Kajomovitz, Enrique
Kling, Felix
Kuehn, Susanne
Lamont, Mike
Levinson, Lorne
Otono, Hidetoshi
Osborne, John
Petersen, Brian
Sato, Osamu
Sabaté-Gilarte, Marta
Schott, Matthias
Sfyrla, Anna
Smolinsky, Jordan
Soffa, Aaron M.
Takubo, Yosuke
Thonet, Pierre
Torrence, Eric
Trojanowski, Sebastian
Zhang, Gang
Technical Proposal for FASER: ForwArd Search ExpeRiment at the LHC
title Technical Proposal for FASER: ForwArd Search ExpeRiment at the LHC
title_full Technical Proposal for FASER: ForwArd Search ExpeRiment at the LHC
title_fullStr Technical Proposal for FASER: ForwArd Search ExpeRiment at the LHC
title_full_unstemmed Technical Proposal for FASER: ForwArd Search ExpeRiment at the LHC
title_short Technical Proposal for FASER: ForwArd Search ExpeRiment at the LHC
title_sort technical proposal for faser: forward search experiment at the lhc
topic Detectors and Experimental Techniques
Particle Physics - Experiment
Particle Physics - Phenomenology
url http://cds.cern.ch/record/2651328
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