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LHC/FCC-based muon colliders

In recent years, three schemes for producing low-emittance muon beams have been proposed: (1) e⁺e⁻ annihilation above threshold using a positron storage ring with a thin target [M. Boscolo, P. Raimondi et al.], (2) laser/FEL-Compton back-scattering off high-energy proton beams circulating in the LHC...

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Autor principal: Zimmermann, Frank
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2018-MOPMF065
https://dx.doi.org/10.1088/1742-6596/1067/2/022017
http://cds.cern.ch/record/2653729
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author Zimmermann, Frank
author_facet Zimmermann, Frank
author_sort Zimmermann, Frank
collection CERN
description In recent years, three schemes for producing low-emittance muon beams have been proposed: (1) e⁺e⁻ annihilation above threshold using a positron storage ring with a thin target [M. Boscolo, P. Raimondi et al.], (2) laser/FEL-Compton back-scattering off high-energy proton beams circulating in the LHC or FCC-hh [L. Serafini et al.], (3) the Gamma factory concept, where partially stripped heavy ions collide with a laser pulse to directly generating muons [W. Krasny]. The Gamma factory would also generate copious amounts of positrons which could in turn be used as source for option (1). On the other hand the top-up booster of the FCC-ee design would be an outstanding e⁺ storage ring, at the right beam energy, around 45 GeV. After rapid acceleration the muons, produced in one of the three ways, could be collided in machines like the SPS, LHC or FCC-hh. Possible collider layouts are suggested.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
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spelling oai-inspirehep.net-16913542021-07-02T13:44:49Zdoi:10.18429/JACoW-IPAC2018-MOPMF065doi:10.1088/1742-6596/1067/2/022017http://cds.cern.ch/record/2653729engZimmermann, FrankLHC/FCC-based muon collidersAccelerators and Storage RingsIn recent years, three schemes for producing low-emittance muon beams have been proposed: (1) e⁺e⁻ annihilation above threshold using a positron storage ring with a thin target [M. Boscolo, P. Raimondi et al.], (2) laser/FEL-Compton back-scattering off high-energy proton beams circulating in the LHC or FCC-hh [L. Serafini et al.], (3) the Gamma factory concept, where partially stripped heavy ions collide with a laser pulse to directly generating muons [W. Krasny]. The Gamma factory would also generate copious amounts of positrons which could in turn be used as source for option (1). On the other hand the top-up booster of the FCC-ee design would be an outstanding e⁺ storage ring, at the right beam energy, around 45 GeV. After rapid acceleration the muons, produced in one of the three ways, could be collided in machines like the SPS, LHC or FCC-hh. Possible collider layouts are suggested.In recent years, three schemes for producing low-emittance muon beams have been proposed: (1) positron-electron annihilation above threshold using a positron storage ring with a thin target, (2) laser/FEL-photon back-scattering off high-energy proton beams circulating in the LHC or FCC-hh, (3) the Gamma factory concept where partially stripped heavy ions collide with a laser pulse to directly generate muons. The Gamma factory would also deliver copious amounts of positrons which could in turn be used as source for option (1). On the other hand the top-up booster of the FCC-ee design would be an outstanding positron storage ring, at the right beam energy, around 45 GeV. After rapid acceleration the muons, produced in one of the three or four ways, could be collided in machines like the SPS, LHC or FCC-hh. Possible collider layouts are suggested.CERN-ACC-2018-076oai:inspirehep.net:16913542018
spellingShingle Accelerators and Storage Rings
Zimmermann, Frank
LHC/FCC-based muon colliders
title LHC/FCC-based muon colliders
title_full LHC/FCC-based muon colliders
title_fullStr LHC/FCC-based muon colliders
title_full_unstemmed LHC/FCC-based muon colliders
title_short LHC/FCC-based muon colliders
title_sort lhc/fcc-based muon colliders
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2018-MOPMF065
https://dx.doi.org/10.1088/1742-6596/1067/2/022017
http://cds.cern.ch/record/2653729
work_keys_str_mv AT zimmermannfrank lhcfccbasedmuoncolliders