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M2 Experimental Beamline Optics Studies for Next Generation Muon Beam Experiments at CERN

In the context of the Physics Beyond Colliders Project, various new experiments have been proposed for the M2 beamline at the CERN North Area fixed target experimental facility. The experiments include MUonE, NA64µ, and the successor to the COMPASS experiment, tentatively named AMBER/NA66. The AMBER...

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Autores principales: Banerjee, Dipanwita, Bernhard, Johannes, Brugger, Markus, Charitonidis, Nikolaos, D'Alessandro, Gian Luigi, Gatignon, Laurent, Gerbershagen, Alexander, Montbarbon, Eva, Mussolini, Carlo Alberto, Parozzi, Elisabetta, Rae, Bastien, Veit, Benjamin M
Lenguaje:eng
Publicado: JACoW 2021
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2021-THPAB143
http://cds.cern.ch/record/2809174
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author Banerjee, Dipanwita
Bernhard, Johannes
Brugger, Markus
Charitonidis, Nikolaos
D'Alessandro, Gian Luigi
Gatignon, Laurent
Gerbershagen, Alexander
Montbarbon, Eva
Mussolini, Carlo Alberto
Parozzi, Elisabetta
Rae, Bastien
Veit, Benjamin M
author_facet Banerjee, Dipanwita
Bernhard, Johannes
Brugger, Markus
Charitonidis, Nikolaos
D'Alessandro, Gian Luigi
Gatignon, Laurent
Gerbershagen, Alexander
Montbarbon, Eva
Mussolini, Carlo Alberto
Parozzi, Elisabetta
Rae, Bastien
Veit, Benjamin M
author_sort Banerjee, Dipanwita
collection CERN
description In the context of the Physics Beyond Colliders Project, various new experiments have been proposed for the M2 beamline at the CERN North Area fixed target experimental facility. The experiments include MUonE, NA64µ, and the successor to the COMPASS experiment, tentatively named AMBER/NA66. The AMBER/NA66 collaboration proposes to build a QCD facility requiring conventional muon and hadron beams for runs up to 2024 in the first phase of the experiment. MUonE aims to measure the hadronic contribution to the vacuum polarization in the context of the (gµ-2) anomaly with a setup longer than 40 m and a 160 GeV/c high intensity, low divergence muon beam. NA64µ is a muon beam program for dark sector physics requiring a 100 - 160 GeV/c muon beam with a 15-25 m long setup. All three experiments request similar beam times up to 2024 with compelling physics programs, which required launching extensive studies for integration, installation, beam optics, and background estimations. The experiments will be presented along with details of the studies performed to check their feasibility and compatibility with an emphasis on the updated optics for these next-generation muon beam experiments.
id cern-2809174
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
publisher JACoW
record_format invenio
spelling cern-28091742022-05-11T21:23:59Zdoi:10.18429/JACoW-IPAC2021-THPAB143http://cds.cern.ch/record/2809174engBanerjee, DipanwitaBernhard, JohannesBrugger, MarkusCharitonidis, NikolaosD'Alessandro, Gian LuigiGatignon, LaurentGerbershagen, AlexanderMontbarbon, EvaMussolini, Carlo AlbertoParozzi, ElisabettaRae, BastienVeit, Benjamin MM2 Experimental Beamline Optics Studies for Next Generation Muon Beam Experiments at CERNAccelerators and Storage RingsIn the context of the Physics Beyond Colliders Project, various new experiments have been proposed for the M2 beamline at the CERN North Area fixed target experimental facility. The experiments include MUonE, NA64µ, and the successor to the COMPASS experiment, tentatively named AMBER/NA66. The AMBER/NA66 collaboration proposes to build a QCD facility requiring conventional muon and hadron beams for runs up to 2024 in the first phase of the experiment. MUonE aims to measure the hadronic contribution to the vacuum polarization in the context of the (gµ-2) anomaly with a setup longer than 40 m and a 160 GeV/c high intensity, low divergence muon beam. NA64µ is a muon beam program for dark sector physics requiring a 100 - 160 GeV/c muon beam with a 15-25 m long setup. All three experiments request similar beam times up to 2024 with compelling physics programs, which required launching extensive studies for integration, installation, beam optics, and background estimations. The experiments will be presented along with details of the studies performed to check their feasibility and compatibility with an emphasis on the updated optics for these next-generation muon beam experiments.JACoWoai:cds.cern.ch:28091742021
spellingShingle Accelerators and Storage Rings
Banerjee, Dipanwita
Bernhard, Johannes
Brugger, Markus
Charitonidis, Nikolaos
D'Alessandro, Gian Luigi
Gatignon, Laurent
Gerbershagen, Alexander
Montbarbon, Eva
Mussolini, Carlo Alberto
Parozzi, Elisabetta
Rae, Bastien
Veit, Benjamin M
M2 Experimental Beamline Optics Studies for Next Generation Muon Beam Experiments at CERN
title M2 Experimental Beamline Optics Studies for Next Generation Muon Beam Experiments at CERN
title_full M2 Experimental Beamline Optics Studies for Next Generation Muon Beam Experiments at CERN
title_fullStr M2 Experimental Beamline Optics Studies for Next Generation Muon Beam Experiments at CERN
title_full_unstemmed M2 Experimental Beamline Optics Studies for Next Generation Muon Beam Experiments at CERN
title_short M2 Experimental Beamline Optics Studies for Next Generation Muon Beam Experiments at CERN
title_sort m2 experimental beamline optics studies for next generation muon beam experiments at cern
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2021-THPAB143
http://cds.cern.ch/record/2809174
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