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Physics with the CMS forward CASTOR calorimeter

The CASTOR calorimeter is designed for the very forward region (pseudorapidity range from -6.6 to -5.2) in the CMS experiment at LHC. It will be operated in the low luminosity period of pp-collisions up to 2x$10^{33}$cm$^{-2}$s$^{-1}$ and in heavy-ion-collisions. The design of the calorimeter is det...

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Autor principal: Katkov, Igor
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1322141
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author Katkov, Igor
author_facet Katkov, Igor
author_sort Katkov, Igor
collection CERN
description The CASTOR calorimeter is designed for the very forward region (pseudorapidity range from -6.6 to -5.2) in the CMS experiment at LHC. It will be operated in the low luminosity period of pp-collisions up to 2x$10^{33}$cm$^{-2}$s$^{-1}$ and in heavy-ion-collisions. The design of the calorimeter is determined by space constraints inside a shield for radiation and for magnetic field and restricted to materials which tolerate a high radiation level. The calorimeter surrounds the beam pipe as a very compact sampling structure of tungsten and quartz plates with a depth of 10 hadronic interaction lengths. The granularity of 16 transversal segments and 14 longitudinal sections allows to reconstruct shower profiles, to separate electron sand photons from hadrons and to search for phenomena with anomalous hadronic energy depositions as expected from exotica. Performance as measured in test beams, first operation experience and first measurements in the very forward region of CMS will be presented.
id cern-1322141
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13221412019-09-30T06:29:59Zhttp://cds.cern.ch/record/1322141engKatkov, IgorPhysics with the CMS forward CASTOR calorimeterDetectors and Experimental TechniquesThe CASTOR calorimeter is designed for the very forward region (pseudorapidity range from -6.6 to -5.2) in the CMS experiment at LHC. It will be operated in the low luminosity period of pp-collisions up to 2x$10^{33}$cm$^{-2}$s$^{-1}$ and in heavy-ion-collisions. The design of the calorimeter is determined by space constraints inside a shield for radiation and for magnetic field and restricted to materials which tolerate a high radiation level. The calorimeter surrounds the beam pipe as a very compact sampling structure of tungsten and quartz plates with a depth of 10 hadronic interaction lengths. The granularity of 16 transversal segments and 14 longitudinal sections allows to reconstruct shower profiles, to separate electron sand photons from hadrons and to search for phenomena with anomalous hadronic energy depositions as expected from exotica. Performance as measured in test beams, first operation experience and first measurements in the very forward region of CMS will be presented.CMS-CR-2011-008oai:cds.cern.ch:13221412011-01-05
spellingShingle Detectors and Experimental Techniques
Katkov, Igor
Physics with the CMS forward CASTOR calorimeter
title Physics with the CMS forward CASTOR calorimeter
title_full Physics with the CMS forward CASTOR calorimeter
title_fullStr Physics with the CMS forward CASTOR calorimeter
title_full_unstemmed Physics with the CMS forward CASTOR calorimeter
title_short Physics with the CMS forward CASTOR calorimeter
title_sort physics with the cms forward castor calorimeter
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/1322141
work_keys_str_mv AT katkovigor physicswiththecmsforwardcastorcalorimeter