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Heavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 MeV/u lead ions

The ion-induced desorption experiment, installed in the CERN Heavy-Ion Accelerator LINAC 3, has been used to study the dynamic outgassing of cryogenic surfaces. Two different targets, bare and goldcoated copper, were bombarded under perpendicular impact with 4.2 MeV/u Pb54+ ions. Partial pressure ri...

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Detalles Bibliográficos
Autores principales: Mahner, E, Bender, M, Evans, L, Kollmus, H, Küchler, D, Scrivens, R, Severin, D, Wengenroth, M
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevSTAB.14.050102
http://cds.cern.ch/record/1397888
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author Mahner, E
Bender, M
Evans, L
Kollmus, H
Küchler, D
Scrivens, R
Severin, D
Wengenroth, M
author_facet Mahner, E
Bender, M
Evans, L
Kollmus, H
Küchler, D
Scrivens, R
Severin, D
Wengenroth, M
author_sort Mahner, E
collection CERN
description The ion-induced desorption experiment, installed in the CERN Heavy-Ion Accelerator LINAC 3, has been used to study the dynamic outgassing of cryogenic surfaces. Two different targets, bare and goldcoated copper, were bombarded under perpendicular impact with 4.2 MeV/u Pb54+ ions. Partial pressure rises of H2, CH4, CO, and CO2 and effective desorption yields were measured at 300, 77, and 6.3 K using single shot and continuous ion bombardment techniques. We find that the heavy-ion-induced desorption yield is temperature dependent and investigate the influence of CO gas cryosorbed at 6.3 K. The gain in desorption yield reduction at cryogenic temperature vanishes after several monolayers of CO are cryosorbed on both targets. In this paper we describe the new cryogenic target assembly, the temperature-dependent pressure rise, desorption yield, and gas adsorption measurements.
id cern-1350522
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13505222019-09-30T06:29:59Zdoi:10.1103/PhysRevSTAB.14.050102http://cds.cern.ch/record/1397888engMahner, EBender, MEvans, LKollmus, HKüchler, DScrivens, RSeverin, DWengenroth, MHeavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 MeV/u lead ionsAccelerators and Storage RingsEngineeringThe ion-induced desorption experiment, installed in the CERN Heavy-Ion Accelerator LINAC 3, has been used to study the dynamic outgassing of cryogenic surfaces. Two different targets, bare and goldcoated copper, were bombarded under perpendicular impact with 4.2 MeV/u Pb54+ ions. Partial pressure rises of H2, CH4, CO, and CO2 and effective desorption yields were measured at 300, 77, and 6.3 K using single shot and continuous ion bombardment techniques. We find that the heavy-ion-induced desorption yield is temperature dependent and investigate the influence of CO gas cryosorbed at 6.3 K. The gain in desorption yield reduction at cryogenic temperature vanishes after several monolayers of CO are cryosorbed on both targets. In this paper we describe the new cryogenic target assembly, the temperature-dependent pressure rise, desorption yield, and gas adsorption measurements.CERN-ATS-2011-008CERN-ATS-Note-2011-097 TECHoai:cds.cern.ch:13505222011-05-13
spellingShingle Accelerators and Storage Rings
Engineering
Mahner, E
Bender, M
Evans, L
Kollmus, H
Küchler, D
Scrivens, R
Severin, D
Wengenroth, M
Heavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 MeV/u lead ions
title Heavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 MeV/u lead ions
title_full Heavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 MeV/u lead ions
title_fullStr Heavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 MeV/u lead ions
title_full_unstemmed Heavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 MeV/u lead ions
title_short Heavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 MeV/u lead ions
title_sort heavy-ion induced desorption yields of cryogenic surfaces bombarded with 4.2 mev/u lead ions
topic Accelerators and Storage Rings
Engineering
url https://dx.doi.org/10.1103/PhysRevSTAB.14.050102
http://cds.cern.ch/record/1397888
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