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Optimized Annular Triode Ion Pump for Experimental Areas in the LHC

The LHC will be the world next generation accelerator to be operational in 2007 at CERN. The UHV requirements force the installation of ion pumps in the experimental areas of ATLAS. Due to the unacceptable particle background that standards ion pumps may generate, a reduction in the amount of materi...

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Autores principales: Knaster, J R, Busso, M, Chatelaine, A, Flakowski, D, Girard, C, Ivaldi, S, Laurent, Jean Michel, Monteiro, I, Rossi, A, Veness, R J M
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/639795
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author Knaster, J R
Busso, M
Chatelaine, A
Flakowski, D
Girard, C
Ivaldi, S
Laurent, Jean Michel
Monteiro, I
Rossi, A
Veness, R J M
author_facet Knaster, J R
Busso, M
Chatelaine, A
Flakowski, D
Girard, C
Ivaldi, S
Laurent, Jean Michel
Monteiro, I
Rossi, A
Veness, R J M
author_sort Knaster, J R
collection CERN
description The LHC will be the world next generation accelerator to be operational in 2007 at CERN. The UHV requirements force the installation of ion pumps in the experimental areas of ATLAS. Due to the unacceptable particle background that standards ion pumps may generate, a reduction in the amount of material constitutive of the pump body is required. Hence, an stainless steel 0.8 mm thick body annular triode ion pump has been designed. A pumping speed of ~ 20 l/s at 10-9 mbar is provided by 15 pumping elements. Finite elements analysis and destructive tests have been performed in its design. Final vacuum tests results are shown.
id cern-639795
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
record_format invenio
spelling cern-6397952023-05-31T13:22:15Zhttp://cds.cern.ch/record/639795engKnaster, J RBusso, MChatelaine, AFlakowski, DGirard, CIvaldi, SLaurent, Jean MichelMonteiro, IRossi, AVeness, R J MOptimized Annular Triode Ion Pump for Experimental Areas in the LHCAccelerators and Storage RingsThe LHC will be the world next generation accelerator to be operational in 2007 at CERN. The UHV requirements force the installation of ion pumps in the experimental areas of ATLAS. Due to the unacceptable particle background that standards ion pumps may generate, a reduction in the amount of material constitutive of the pump body is required. Hence, an stainless steel 0.8 mm thick body annular triode ion pump has been designed. A pumping speed of ~ 20 l/s at 10-9 mbar is provided by 15 pumping elements. Finite elements analysis and destructive tests have been performed in its design. Final vacuum tests results are shown.LHC-Project-Report-670CERN-LHC-Project-Report-670oai:cds.cern.ch:6397952003-08-25
spellingShingle Accelerators and Storage Rings
Knaster, J R
Busso, M
Chatelaine, A
Flakowski, D
Girard, C
Ivaldi, S
Laurent, Jean Michel
Monteiro, I
Rossi, A
Veness, R J M
Optimized Annular Triode Ion Pump for Experimental Areas in the LHC
title Optimized Annular Triode Ion Pump for Experimental Areas in the LHC
title_full Optimized Annular Triode Ion Pump for Experimental Areas in the LHC
title_fullStr Optimized Annular Triode Ion Pump for Experimental Areas in the LHC
title_full_unstemmed Optimized Annular Triode Ion Pump for Experimental Areas in the LHC
title_short Optimized Annular Triode Ion Pump for Experimental Areas in the LHC
title_sort optimized annular triode ion pump for experimental areas in the lhc
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/639795
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