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The aluminization of 600 k WLS fibers for the TileCal/ATLAS/LHC

The TILE CALorimeter, the hadronic sampling calorimeter of ATLAS/LHC /CERN, is made of iron and polystyrene scintillating tiles. The light produced in scintillating tiles is absorbed and guided to the photomultipliers (PMTs) through wave length shifter (WLS) optical fibers. To optimize the detection...

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Detalles Bibliográficos
Autores principales: Saraiva, J G, Wemans, A, Maneira, M J P, Maio, A, Patriarca, J
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TNS.2004.829387
http://cds.cern.ch/record/816793
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author Saraiva, J G
Wemans, A
Maneira, M J P
Maio, A
Patriarca, J
author_facet Saraiva, J G
Wemans, A
Maneira, M J P
Maio, A
Patriarca, J
author_sort Saraiva, J G
collection CERN
description The TILE CALorimeter, the hadronic sampling calorimeter of ATLAS/LHC /CERN, is made of iron and polystyrene scintillating tiles. The light produced in scintillating tiles is absorbed and guided to the photomultipliers (PMTs) through wave length shifter (WLS) optical fibers. To optimize the detection of jets and muons, the top of the fibers away of the PMTs is coated with an aluminum mirror. This aluminum mirror is produced by planar magnetron sputtering. This process adds to an excellent reproducibility a minimal thermal aggression, important for a proper film adhesion to the plastic surface. To satisfy schedule and optical critical requirements, a dedicated mass production machine named SIDELO II was projected and constructed. A reflectivity of R similar to 75% is achieved and the light output uniformity improved by asymptotically equal to 10%. The aluminization of the fibers and their quality control started in August 1999 and went on continuously until May 2002. The quality control results showed a reproducibility over the optical characteristics of the fibers that fully accomplish the ATLAS requirements. 18 Refs.
id cern-816793
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
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spelling cern-8167932019-09-30T06:29:59Zdoi:10.1109/TNS.2004.829387http://cds.cern.ch/record/816793engSaraiva, J GWemans, AManeira, M J PMaio, APatriarca, JThe aluminization of 600 k WLS fibers for the TileCal/ATLAS/LHCDetectors and Experimental TechniquesThe TILE CALorimeter, the hadronic sampling calorimeter of ATLAS/LHC /CERN, is made of iron and polystyrene scintillating tiles. The light produced in scintillating tiles is absorbed and guided to the photomultipliers (PMTs) through wave length shifter (WLS) optical fibers. To optimize the detection of jets and muons, the top of the fibers away of the PMTs is coated with an aluminum mirror. This aluminum mirror is produced by planar magnetron sputtering. This process adds to an excellent reproducibility a minimal thermal aggression, important for a proper film adhesion to the plastic surface. To satisfy schedule and optical critical requirements, a dedicated mass production machine named SIDELO II was projected and constructed. A reflectivity of R similar to 75% is achieved and the light output uniformity improved by asymptotically equal to 10%. The aluminization of the fibers and their quality control started in August 1999 and went on continuously until May 2002. The quality control results showed a reproducibility over the optical characteristics of the fibers that fully accomplish the ATLAS requirements. 18 Refs.oai:cds.cern.ch:8167932004
spellingShingle Detectors and Experimental Techniques
Saraiva, J G
Wemans, A
Maneira, M J P
Maio, A
Patriarca, J
The aluminization of 600 k WLS fibers for the TileCal/ATLAS/LHC
title The aluminization of 600 k WLS fibers for the TileCal/ATLAS/LHC
title_full The aluminization of 600 k WLS fibers for the TileCal/ATLAS/LHC
title_fullStr The aluminization of 600 k WLS fibers for the TileCal/ATLAS/LHC
title_full_unstemmed The aluminization of 600 k WLS fibers for the TileCal/ATLAS/LHC
title_short The aluminization of 600 k WLS fibers for the TileCal/ATLAS/LHC
title_sort aluminization of 600 k wls fibers for the tilecal/atlas/lhc
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/TNS.2004.829387
http://cds.cern.ch/record/816793
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