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The ATLAS semiconductor tracker

The ATLAS Semiconductor Tracker (SCT) is presented. About 16000 silicon micro-strip sensors with a total active surface of over 60 m **2 and with 6.3 million read-out channels are built into 4088 modules arranged into four barrel layers and nine disks covering each of the forward regions up to an et...

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Autor principal: Mikuz, Marko
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/904800
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author Mikuz, Marko
author_facet Mikuz, Marko
author_sort Mikuz, Marko
collection CERN
description The ATLAS Semiconductor Tracker (SCT) is presented. About 16000 silicon micro-strip sensors with a total active surface of over 60 m **2 and with 6.3 million read-out channels are built into 4088 modules arranged into four barrel layers and nine disks covering each of the forward regions up to an eta of 2.5. Challenges are imposed by the hostile radiation environment with particle fluences up to 2 multiplied by 10**1**4 cm**-**2 1 MeV neutron NIEL equivalent and 100 kGy TID, the 25 ns LHC bunch crossing time and the need for a hermetic, lightweight tracker. The solution adopted is carefully designed strip detectors operated at -7 degree C, biased up to 500 V and read out by binary radhard fast BiCMOS electronics. A zero-CTE carbon fibre structure provides mechanical support. 30 kW of power are supplied on aluminiutn/Kapton tapes and cooled by C//3F//8 evaporative cooling. Data and commands are transferred by optical links. Prototypes of detector modules have been built, irradiated to the maximum expected fluence and successfully tested. The detector is in full production now. This will be followed by integration starting in 2004 and installation in 2006 to match the LHC start-up in 2007.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2003
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spelling cern-9048002019-09-30T06:29:59Zhttp://cds.cern.ch/record/904800engMikuz, MarkoThe ATLAS semiconductor trackerDetectors and Experimental TechniquesThe ATLAS Semiconductor Tracker (SCT) is presented. About 16000 silicon micro-strip sensors with a total active surface of over 60 m **2 and with 6.3 million read-out channels are built into 4088 modules arranged into four barrel layers and nine disks covering each of the forward regions up to an eta of 2.5. Challenges are imposed by the hostile radiation environment with particle fluences up to 2 multiplied by 10**1**4 cm**-**2 1 MeV neutron NIEL equivalent and 100 kGy TID, the 25 ns LHC bunch crossing time and the need for a hermetic, lightweight tracker. The solution adopted is carefully designed strip detectors operated at -7 degree C, biased up to 500 V and read out by binary radhard fast BiCMOS electronics. A zero-CTE carbon fibre structure provides mechanical support. 30 kW of power are supplied on aluminiutn/Kapton tapes and cooled by C//3F//8 evaporative cooling. Data and commands are transferred by optical links. Prototypes of detector modules have been built, irradiated to the maximum expected fluence and successfully tested. The detector is in full production now. This will be followed by integration starting in 2004 and installation in 2006 to match the LHC start-up in 2007.oai:cds.cern.ch:9048002003
spellingShingle Detectors and Experimental Techniques
Mikuz, Marko
The ATLAS semiconductor tracker
title The ATLAS semiconductor tracker
title_full The ATLAS semiconductor tracker
title_fullStr The ATLAS semiconductor tracker
title_full_unstemmed The ATLAS semiconductor tracker
title_short The ATLAS semiconductor tracker
title_sort atlas semiconductor tracker
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/904800
work_keys_str_mv AT mikuzmarko theatlassemiconductortracker
AT mikuzmarko atlassemiconductortracker