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The Large Hadron-Electron Collider (LHEC) at the LHC

Sub-atomic physics at the energy frontier probes the structure of the fundamental quanta of the Universe. The Large Hadron Collider (LHC) at CERN opens for the first time the ‘terascale’ (TeV energy scale) to experimental scrutiny, exposing the physics of the Universe at the subattometric (∼ 10−19 m...

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Detalles Bibliográficos
Autores principales: Zimmermann, F, Bordry, F, Braun, H, Brüning, Oliver Sim, Burkhardt, H, Eide, A, de Roeck, A, Garoby, R, Holzer, B, Jowett, J, Linnecar, T, Mess, K, Osborne, J, Rinolfi, L, Schulte, D, Tomás, R, Tückmantel, Joachim, Vivoli, A, Omori, T, Urakawa, J, Willeke, F, Chattopadhyay, S, Dainton, J, Aksakal, H, Nigde, U, Sultansoy, S, Klein, M
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:http://cds.cern.ch/record/1208440
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author Zimmermann, F
Bordry, F
Braun, H
Brüning, Oliver Sim
Burkhardt, H
Eide, A
de Roeck, A
Garoby, R
Holzer, B
Jowett, J
Linnecar, T
Mess, K
Osborne, J
Rinolfi, L
Schulte, D
Tomás, R
Tückmantel, Joachim
Vivoli, A
Omori, T
Urakawa, J
Willeke, F
Chattopadhyay, S
Dainton, J
Aksakal, H
Nigde, U
Sultansoy, S
Klein, M
author_facet Zimmermann, F
Bordry, F
Braun, H
Brüning, Oliver Sim
Burkhardt, H
Eide, A
de Roeck, A
Garoby, R
Holzer, B
Jowett, J
Linnecar, T
Mess, K
Osborne, J
Rinolfi, L
Schulte, D
Tomás, R
Tückmantel, Joachim
Vivoli, A
Omori, T
Urakawa, J
Willeke, F
Chattopadhyay, S
Dainton, J
Aksakal, H
Nigde, U
Sultansoy, S
Klein, M
author_sort Zimmermann, F
collection CERN
description Sub-atomic physics at the energy frontier probes the structure of the fundamental quanta of the Universe. The Large Hadron Collider (LHC) at CERN opens for the first time the ‘terascale’ (TeV energy scale) to experimental scrutiny, exposing the physics of the Universe at the subattometric (∼ 10−19 m, 10−10 as) scale. The LHC will also take the science of nuclear matter to hitherto unparalleled energy densities. The hadron beams, protons or ions, in the LHC underpin this horizon, and also offer new experimental possibilities at this energy scale. A Large Hadron electron Collider, LHeC, in which an electron (positron) beam of energy 60 to 140 GeV is in collision with one of the LHC hadron beams, makes possible terascale leptonhadron physics. The LHeC is presently being evaluated in the form of two options, ‘ring-ring’ and ‘linac-ring’, either of which operate simultaneously with pp or ion-ion collisions in other LHC interaction regions. Each option takes advantage of recent advances in radio-frequency, in linear acceleration, and in other associated technologies, to achieve ep luminosity as large as 1033 cm−2s−1.
id cern-1208440
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
record_format invenio
spelling cern-12084402019-09-30T06:29:59Zhttp://cds.cern.ch/record/1208440engZimmermann, FBordry, FBraun, HBrüning, Oliver SimBurkhardt, HEide, Ade Roeck, AGaroby, RHolzer, BJowett, JLinnecar, TMess, KOsborne, JRinolfi, LSchulte, DTomás, RTückmantel, JoachimVivoli, AOmori, TUrakawa, JWilleke, FChattopadhyay, SDainton, JAksakal, HNigde, USultansoy, SKlein, MThe Large Hadron-Electron Collider (LHEC) at the LHCAccelerators and Storage RingsSub-atomic physics at the energy frontier probes the structure of the fundamental quanta of the Universe. The Large Hadron Collider (LHC) at CERN opens for the first time the ‘terascale’ (TeV energy scale) to experimental scrutiny, exposing the physics of the Universe at the subattometric (∼ 10−19 m, 10−10 as) scale. The LHC will also take the science of nuclear matter to hitherto unparalleled energy densities. The hadron beams, protons or ions, in the LHC underpin this horizon, and also offer new experimental possibilities at this energy scale. A Large Hadron electron Collider, LHeC, in which an electron (positron) beam of energy 60 to 140 GeV is in collision with one of the LHC hadron beams, makes possible terascale leptonhadron physics. The LHeC is presently being evaluated in the form of two options, ‘ring-ring’ and ‘linac-ring’, either of which operate simultaneously with pp or ion-ion collisions in other LHC interaction regions. Each option takes advantage of recent advances in radio-frequency, in linear acceleration, and in other associated technologies, to achieve ep luminosity as large as 1033 cm−2s−1.CERN-ATS-2009-053CERN-LHeC-Note-2009-001 ACCoai:cds.cern.ch:12084402009-09-24
spellingShingle Accelerators and Storage Rings
Zimmermann, F
Bordry, F
Braun, H
Brüning, Oliver Sim
Burkhardt, H
Eide, A
de Roeck, A
Garoby, R
Holzer, B
Jowett, J
Linnecar, T
Mess, K
Osborne, J
Rinolfi, L
Schulte, D
Tomás, R
Tückmantel, Joachim
Vivoli, A
Omori, T
Urakawa, J
Willeke, F
Chattopadhyay, S
Dainton, J
Aksakal, H
Nigde, U
Sultansoy, S
Klein, M
The Large Hadron-Electron Collider (LHEC) at the LHC
title The Large Hadron-Electron Collider (LHEC) at the LHC
title_full The Large Hadron-Electron Collider (LHEC) at the LHC
title_fullStr The Large Hadron-Electron Collider (LHEC) at the LHC
title_full_unstemmed The Large Hadron-Electron Collider (LHEC) at the LHC
title_short The Large Hadron-Electron Collider (LHEC) at the LHC
title_sort large hadron-electron collider (lhec) at the lhc
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1208440
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