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Performance and perspectives of the diamond based Beam Condition Monitor for beam loss monitoring at CMS

At CMS, a beam loss monitoring system is operated to protect the silicon detectors from high particle rates, arising from intense beam loss events. As detectors, poly-crystalline CVD diamond sensors are placed around the beam pipe at several locations inside CMS. In case of extremely high detector c...

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Autor principal: Guthoff, Moritz
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/2105520
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author Guthoff, Moritz
author_facet Guthoff, Moritz
author_sort Guthoff, Moritz
collection CERN
description At CMS, a beam loss monitoring system is operated to protect the silicon detectors from high particle rates, arising from intense beam loss events. As detectors, poly-crystalline CVD diamond sensors are placed around the beam pipe at several locations inside CMS. In case of extremely high detector currents, the LHC beams are automatically extracted from the LHC rings.Diamond is the detector material of choice due to its radiation hardness. Predictions of the detector lifetime were made based on FLUKA monte-carlo simulations and irradiation test results from the RD42 collaboration, which attested no significant radiation damage over several years.During the LHC operational Run1 (2010 â?? 2013), the detector efficiencies were monitored. A signal decrease of about 50 times stronger than expectations was observed in the in-situ radiation environment. Electric field deformations due to charge carriers, trapped in radiation induced lattice defects, are responsible for this signal decrease. This so-called polarization effect is rate dependent and results in a non-linearity of the detector response. Measurements using the transient current technique reveal the electric field distribution. Online measurements and laboratory analysis of polarization effects in diamond sensors are presented.In the scope of the HL-LHC upgrade, various changes are foreseen. Perspectives for upgrades of the detector electronics are presented. Different candidates for sensor technologies are tested for their performance in a high rate, highly damaging radiation environment.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling cern-21055202022-08-10T12:52:21Zhttp://cds.cern.ch/record/2105520engGuthoff, MoritzPerformance and perspectives of the diamond based Beam Condition Monitor for beam loss monitoring at CMSDetectors and Experimental TechniquesAt CMS, a beam loss monitoring system is operated to protect the silicon detectors from high particle rates, arising from intense beam loss events. As detectors, poly-crystalline CVD diamond sensors are placed around the beam pipe at several locations inside CMS. In case of extremely high detector currents, the LHC beams are automatically extracted from the LHC rings.Diamond is the detector material of choice due to its radiation hardness. Predictions of the detector lifetime were made based on FLUKA monte-carlo simulations and irradiation test results from the RD42 collaboration, which attested no significant radiation damage over several years.During the LHC operational Run1 (2010 â?? 2013), the detector efficiencies were monitored. A signal decrease of about 50 times stronger than expectations was observed in the in-situ radiation environment. Electric field deformations due to charge carriers, trapped in radiation induced lattice defects, are responsible for this signal decrease. This so-called polarization effect is rate dependent and results in a non-linearity of the detector response. Measurements using the transient current technique reveal the electric field distribution. Online measurements and laboratory analysis of polarization effects in diamond sensors are presented.In the scope of the HL-LHC upgrade, various changes are foreseen. Perspectives for upgrades of the detector electronics are presented. Different candidates for sensor technologies are tested for their performance in a high rate, highly damaging radiation environment.CMS-CR-2014-130oai:cds.cern.ch:21055202014-06-27
spellingShingle Detectors and Experimental Techniques
Guthoff, Moritz
Performance and perspectives of the diamond based Beam Condition Monitor for beam loss monitoring at CMS
title Performance and perspectives of the diamond based Beam Condition Monitor for beam loss monitoring at CMS
title_full Performance and perspectives of the diamond based Beam Condition Monitor for beam loss monitoring at CMS
title_fullStr Performance and perspectives of the diamond based Beam Condition Monitor for beam loss monitoring at CMS
title_full_unstemmed Performance and perspectives of the diamond based Beam Condition Monitor for beam loss monitoring at CMS
title_short Performance and perspectives of the diamond based Beam Condition Monitor for beam loss monitoring at CMS
title_sort performance and perspectives of the diamond based beam condition monitor for beam loss monitoring at cms
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/2105520
work_keys_str_mv AT guthoffmoritz performanceandperspectivesofthediamondbasedbeamconditionmonitorforbeamlossmonitoringatcms