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The Physics Prospects for CLIC

Following a brief outline of the CLIC project, this talk summarizes some of the principal motivations for an e+ e- collider with E_CM = 3 TeV. It is shown by several examples that CLIC would represent a significant step beyond the LHC and ILC in its capabilities for precision measurements at high en...

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Autor principal: Ellis, John
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:http://cds.cern.ch/record/1139060
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author Ellis, John
author_facet Ellis, John
author_sort Ellis, John
collection CERN
description Following a brief outline of the CLIC project, this talk summarizes some of the principal motivations for an e+ e- collider with E_CM = 3 TeV. It is shown by several examples that CLIC would represent a significant step beyond the LHC and ILC in its capabilities for precision measurements at high energies. It would make possible a complete study of a light Higgs boson, including rare decay modes, and would provide a unique tool to study a heavy Higgs boson. CLIC could also complete the studies of supersymmetric spectra, if sparticles are relatively light, and discover any heavier sparticles. It would also enable deeper probes of extra dimensions, new gauge bosons and excited quarks or leptons. CLIC has unique value to add to experimental particle physics, whatever the LHC discovers.
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spelling cern-11390602023-03-15T19:11:28Zhttp://cds.cern.ch/record/1139060engEllis, JohnThe Physics Prospects for CLICParticle Physics - PhenomenologyFollowing a brief outline of the CLIC project, this talk summarizes some of the principal motivations for an e+ e- collider with E_CM = 3 TeV. It is shown by several examples that CLIC would represent a significant step beyond the LHC and ILC in its capabilities for precision measurements at high energies. It would make possible a complete study of a light Higgs boson, including rare decay modes, and would provide a unique tool to study a heavy Higgs boson. CLIC could also complete the studies of supersymmetric spectra, if sparticles are relatively light, and discover any heavier sparticles. It would also enable deeper probes of extra dimensions, new gauge bosons and excited quarks or leptons. CLIC has unique value to add to experimental particle physics, whatever the LHC discovers.Following a brief outline of the CLIC project, this talk summarizes some of the principal motivations for an e+ e- collider with E_CM = 3 TeV. It is shown by several examples that CLIC would represent a significant step beyond the LHC and ILC in its capabilities for precision measurements at high energies. It would make possible a complete study of a light Higgs boson, including rare decay modes, and would provide a unique tool to study a heavy Higgs boson. CLIC could also complete the studies of supersymmetric spectra, if sparticles are relatively light, and discover any heavier sparticles. It would also enable deeper probes of extra dimensions, new gauge bosons and excited quarks or leptons. CLIC has unique value to add to experimental particle physics, whatever the LHC discovers.arXiv:0811.1366CERN-PH-TH-2008-216CERN-PH-TH-2008-216oai:cds.cern.ch:11390602008-11-11
spellingShingle Particle Physics - Phenomenology
Ellis, John
The Physics Prospects for CLIC
title The Physics Prospects for CLIC
title_full The Physics Prospects for CLIC
title_fullStr The Physics Prospects for CLIC
title_full_unstemmed The Physics Prospects for CLIC
title_short The Physics Prospects for CLIC
title_sort physics prospects for clic
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/1139060
work_keys_str_mv AT ellisjohn thephysicsprospectsforclic
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