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Detector Systems at CLIC

The Compact Linear Collider CLIC is designed to deliver e+e- collisions at a center of mass energy of up to 3 TeV. The detector systems at this collider have to provide highly efficient tracking and excellent jet energy resolution and hermeticity for multi-TeV final states with multiple jets and lep...

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Autor principal: Simon, Frank
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1382915
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author Simon, Frank
author_facet Simon, Frank
author_sort Simon, Frank
collection CERN
description The Compact Linear Collider CLIC is designed to deliver e+e- collisions at a center of mass energy of up to 3 TeV. The detector systems at this collider have to provide highly efficient tracking and excellent jet energy resolution and hermeticity for multi-TeV final states with multiple jets and leptons. In addition, the detector systems have to be capable of distinguishing physics events from large beam-induced background at a crossing frequency of 2 GHz. Like for the detector concepts at the ILC, CLIC detectors are based on event reconstruction using particle flow algorithms. The two detector concepts for the ILC, ILD and SID, were adapted for CLIC using calorimeters with dense absorbers limiting leakage through increased compactness, as well as modified forward and vertex detector geometries and precise time stamping to cope with increased background levels. The overall detector concepts for CLIC are presented, with particular emphasis on the main detector and engineering challenges, such as: the ultra-thin vertex detector with high resolution and fast time-stamping, hadronic calorimetry using tungsten absorbers, and event reconstruction techniques related to particle flow algorithms and beam background suppression.
id cern-1382915
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13829152019-09-30T06:29:59Zhttp://cds.cern.ch/record/1382915engSimon, FrankDetector Systems at CLICDetectors and Experimental TechniquesThe Compact Linear Collider CLIC is designed to deliver e+e- collisions at a center of mass energy of up to 3 TeV. The detector systems at this collider have to provide highly efficient tracking and excellent jet energy resolution and hermeticity for multi-TeV final states with multiple jets and leptons. In addition, the detector systems have to be capable of distinguishing physics events from large beam-induced background at a crossing frequency of 2 GHz. Like for the detector concepts at the ILC, CLIC detectors are based on event reconstruction using particle flow algorithms. The two detector concepts for the ILC, ILD and SID, were adapted for CLIC using calorimeters with dense absorbers limiting leakage through increased compactness, as well as modified forward and vertex detector geometries and precise time stamping to cope with increased background levels. The overall detector concepts for CLIC are presented, with particular emphasis on the main detector and engineering challenges, such as: the ultra-thin vertex detector with high resolution and fast time-stamping, hadronic calorimetry using tungsten absorbers, and event reconstruction techniques related to particle flow algorithms and beam background suppression.arXiv:1109.3387MPP-2011-112oai:cds.cern.ch:13829152011-09-16
spellingShingle Detectors and Experimental Techniques
Simon, Frank
Detector Systems at CLIC
title Detector Systems at CLIC
title_full Detector Systems at CLIC
title_fullStr Detector Systems at CLIC
title_full_unstemmed Detector Systems at CLIC
title_short Detector Systems at CLIC
title_sort detector systems at clic
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/1382915
work_keys_str_mv AT simonfrank detectorsystemsatclic