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Secondary Electron Yield on Cryogenic Surfaces as a Function of Physisorbed Gases

Electron cloud is a serious limitation for the operation of particle accelerators with intense positively charged beams. It occurs if the secondary electron yield (SEY) of the beam-pipe surface is sufficiently high to induce an electron multiplication. At low surface temperatures, the SEY is strongl...

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Detalles Bibliográficos
Autores principales: Kuzucan, A, Neupert, H, Taborelli, M, Störi, H
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1407932
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author Kuzucan, A
Neupert, H
Taborelli, M
Störi, H
author_facet Kuzucan, A
Neupert, H
Taborelli, M
Störi, H
author_sort Kuzucan, A
collection CERN
description Electron cloud is a serious limitation for the operation of particle accelerators with intense positively charged beams. It occurs if the secondary electron yield (SEY) of the beam-pipe surface is sufficiently high to induce an electron multiplication. At low surface temperatures, the SEY is strongly influenced by the nature of the physisorbed gases and by the corresponding surface coverage. These conditions occur in many accelerators operating with superconducting magnets and cold vacuum sections such as the LHC and RHIC. In this work, we investigated the variation of the SEY of copper, aluminium and electro-polished copper as a function of physisorbed N2, CO, CO2, CH4, Kr, C2H6 at cryogenic temperatures. The conditioning by electron bombardment of the surface after the physisorption of H2O on electro polished copper will also be presented. The results of the various gases are compared in order to find a rationale for the behaviour of the secondary electrons for the various adsorbates.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-14079322022-08-17T13:32:26Zhttp://cds.cern.ch/record/1407932engKuzucan, ANeupert, HTaborelli, MStöri, HSecondary Electron Yield on Cryogenic Surfaces as a Function of Physisorbed GasesAccelerators and Storage RingsElectron cloud is a serious limitation for the operation of particle accelerators with intense positively charged beams. It occurs if the secondary electron yield (SEY) of the beam-pipe surface is sufficiently high to induce an electron multiplication. At low surface temperatures, the SEY is strongly influenced by the nature of the physisorbed gases and by the corresponding surface coverage. These conditions occur in many accelerators operating with superconducting magnets and cold vacuum sections such as the LHC and RHIC. In this work, we investigated the variation of the SEY of copper, aluminium and electro-polished copper as a function of physisorbed N2, CO, CO2, CH4, Kr, C2H6 at cryogenic temperatures. The conditioning by electron bombardment of the surface after the physisorption of H2O on electro polished copper will also be presented. The results of the various gases are compared in order to find a rationale for the behaviour of the secondary electrons for the various adsorbates.CERN-ATS-2011-267oai:cds.cern.ch:14079322011-12-01
spellingShingle Accelerators and Storage Rings
Kuzucan, A
Neupert, H
Taborelli, M
Störi, H
Secondary Electron Yield on Cryogenic Surfaces as a Function of Physisorbed Gases
title Secondary Electron Yield on Cryogenic Surfaces as a Function of Physisorbed Gases
title_full Secondary Electron Yield on Cryogenic Surfaces as a Function of Physisorbed Gases
title_fullStr Secondary Electron Yield on Cryogenic Surfaces as a Function of Physisorbed Gases
title_full_unstemmed Secondary Electron Yield on Cryogenic Surfaces as a Function of Physisorbed Gases
title_short Secondary Electron Yield on Cryogenic Surfaces as a Function of Physisorbed Gases
title_sort secondary electron yield on cryogenic surfaces as a function of physisorbed gases
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1407932
work_keys_str_mv AT kuzucana secondaryelectronyieldoncryogenicsurfacesasafunctionofphysisorbedgases
AT neuperth secondaryelectronyieldoncryogenicsurfacesasafunctionofphysisorbedgases
AT taborellim secondaryelectronyieldoncryogenicsurfacesasafunctionofphysisorbedgases
AT storih secondaryelectronyieldoncryogenicsurfacesasafunctionofphysisorbedgases