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Optimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperature

Electron cloud (e-cloud) mitigation is an essential requirement for proton circular accelerators in order to guarantee beam stability at a high intensity and limit the heat load on cryogenic sections. Laser-engineered surface structuring is considered a credible process to reduce the secondary elect...

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Autores principales: Calatroni, Sergio, Garcia-Tabares Valdivieso, Elisa, Perez Fontenla, Ana Teresa, Taborelli, Mauro, Neupert, Holger, Himmerlich, Marcel, Chiggiato, Paolo, Bajek, David, Wackerow, Stefan, Abdolvand, Amin
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.23.033101
http://cds.cern.ch/record/2713485
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author Calatroni, Sergio
Garcia-Tabares Valdivieso, Elisa
Perez Fontenla, Ana Teresa
Taborelli, Mauro
Neupert, Holger
Himmerlich, Marcel
Chiggiato, Paolo
Bajek, David
Wackerow, Stefan
Abdolvand, Amin
author_facet Calatroni, Sergio
Garcia-Tabares Valdivieso, Elisa
Perez Fontenla, Ana Teresa
Taborelli, Mauro
Neupert, Holger
Himmerlich, Marcel
Chiggiato, Paolo
Bajek, David
Wackerow, Stefan
Abdolvand, Amin
author_sort Calatroni, Sergio
collection CERN
description Electron cloud (e-cloud) mitigation is an essential requirement for proton circular accelerators in order to guarantee beam stability at a high intensity and limit the heat load on cryogenic sections. Laser-engineered surface structuring is considered a credible process to reduce the secondary electron yield (SEY) of the surfaces facing the beam, thus suppressing the e-cloud phenomenon within the high luminosity upgrade of the LHC collider at CERN (HL-LHC). In this study, the SEY of Cu samples with different oxidation states, obtained either through laser treatment in air or in different gas atmospheres or via thermal annealing, has been measured at room and cryogenic temperatures and correlated with the surface composition measured by x-ray photoelectron spectroscopy. It was observed that samples treated in nitrogen display the lowest and more stable SEY values, correlated with the lower surface oxidation. In addition, the surface oxide layer of air-treated samples charges upon electron exposure at a low temperature, leading to fluctuations in the SEY.
id oai-inspirehep.net-1785147
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-17851472022-08-17T13:00:34Zdoi:10.1103/PhysRevAccelBeams.23.033101http://cds.cern.ch/record/2713485engCalatroni, SergioGarcia-Tabares Valdivieso, ElisaPerez Fontenla, Ana TeresaTaborelli, MauroNeupert, HolgerHimmerlich, MarcelChiggiato, PaoloBajek, DavidWackerow, StefanAbdolvand, AminOptimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperatureAccelerators and Storage RingsElectron cloud (e-cloud) mitigation is an essential requirement for proton circular accelerators in order to guarantee beam stability at a high intensity and limit the heat load on cryogenic sections. Laser-engineered surface structuring is considered a credible process to reduce the secondary electron yield (SEY) of the surfaces facing the beam, thus suppressing the e-cloud phenomenon within the high luminosity upgrade of the LHC collider at CERN (HL-LHC). In this study, the SEY of Cu samples with different oxidation states, obtained either through laser treatment in air or in different gas atmospheres or via thermal annealing, has been measured at room and cryogenic temperatures and correlated with the surface composition measured by x-ray photoelectron spectroscopy. It was observed that samples treated in nitrogen display the lowest and more stable SEY values, correlated with the lower surface oxidation. In addition, the surface oxide layer of air-treated samples charges upon electron exposure at a low temperature, leading to fluctuations in the SEY.oai:inspirehep.net:17851472020
spellingShingle Accelerators and Storage Rings
Calatroni, Sergio
Garcia-Tabares Valdivieso, Elisa
Perez Fontenla, Ana Teresa
Taborelli, Mauro
Neupert, Holger
Himmerlich, Marcel
Chiggiato, Paolo
Bajek, David
Wackerow, Stefan
Abdolvand, Amin
Optimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperature
title Optimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperature
title_full Optimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperature
title_fullStr Optimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperature
title_full_unstemmed Optimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperature
title_short Optimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperature
title_sort optimization of the secondary electron yield of laser-structured copper surfaces at room and cryogenic temperature
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevAccelBeams.23.033101
http://cds.cern.ch/record/2713485
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