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BSM physics at CLIC

The Compact Linear Collider (CLIC) is an option for a future electron-positron collider operating at centre-of-mass energies from a few hundred GeV up to 3 TeV. The search for phenomena beyond the Standard Model through direct observation of new particles and precision measurements is one of the mai...

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Autor principal: Simoniello, Rosa
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2230934
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author Simoniello, Rosa
author_facet Simoniello, Rosa
author_sort Simoniello, Rosa
collection CERN
description The Compact Linear Collider (CLIC) is an option for a future electron-positron collider operating at centre-of-mass energies from a few hundred GeV up to 3 TeV. The search for phenomena beyond the Standard Model through direct observation of new particles and precision measurements is one of the main motivations for the high-energy stages of CLIC. An overview of physics benchmark studies assuming different new physics scenarios is given in this contribution. These studies are based on full detector simulations. New particles can be discovered in most of the considered scenarios almost up to the kinematic limit ($\sqrt{s}$/2 for pair production). The low background conditions at CLIC provide extended discovery potential compared to hadron colliders, for example in the case of non-coloured TeV-scale SUSY particles. In addition to direct particle searches, BSM models can be probed up to scales of tens of TeV through precision measurements. Examples, including recent results on the reaction $e^+e^- \to \gamma\gamma$, are given. Beam polarisation allows to constrain the underlying theory further in many cases. The discussion of LHC results relevant for the CLIC physics case is also included.
id cern-2230934
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
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spelling cern-22309342019-09-30T06:29:59Zhttp://cds.cern.ch/record/2230934engSimoniello, RosaBSM physics at CLICAccelerators and Storage RingsThe Compact Linear Collider (CLIC) is an option for a future electron-positron collider operating at centre-of-mass energies from a few hundred GeV up to 3 TeV. The search for phenomena beyond the Standard Model through direct observation of new particles and precision measurements is one of the main motivations for the high-energy stages of CLIC. An overview of physics benchmark studies assuming different new physics scenarios is given in this contribution. These studies are based on full detector simulations. New particles can be discovered in most of the considered scenarios almost up to the kinematic limit ($\sqrt{s}$/2 for pair production). The low background conditions at CLIC provide extended discovery potential compared to hadron colliders, for example in the case of non-coloured TeV-scale SUSY particles. In addition to direct particle searches, BSM models can be probed up to scales of tens of TeV through precision measurements. Examples, including recent results on the reaction $e^+e^- \to \gamma\gamma$, are given. Beam polarisation allows to constrain the underlying theory further in many cases. The discussion of LHC results relevant for the CLIC physics case is also included.CLICdp-Conf-2016-013oai:cds.cern.ch:22309342016
spellingShingle Accelerators and Storage Rings
Simoniello, Rosa
BSM physics at CLIC
title BSM physics at CLIC
title_full BSM physics at CLIC
title_fullStr BSM physics at CLIC
title_full_unstemmed BSM physics at CLIC
title_short BSM physics at CLIC
title_sort bsm physics at clic
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2230934
work_keys_str_mv AT simoniellorosa bsmphysicsatclic