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Towards the Implementation of Laser Engineered Surface Structures for Electron Cloud Mitigation

The LHC operation has proven that the electron cloud could be a significant limiting factor in machine performance, in particular for future High Luminosity LHC (HL-LHC) beams. Electron clouds, generated by electron multipacting in the beam pipes, leads to beam instabilities and beam-induced heat lo...

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Autores principales: Sitko, Monika, Abdolvand, Amin, Baglin, Vincent, Bajek, David, Calatroni, Sergio, Chiggiato, Paolo, Colling, Miriam, Di Girolamo, Beniamino, Garcia-Tabares Valdivieso, Elisa, Jones, Thomas, McIntosh, Peter, Taborelli, Mauro, Wackerow, Stefan
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2018-TUZGBE3
http://cds.cern.ch/record/2666553
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author Sitko, Monika
Abdolvand, Amin
Baglin, Vincent
Bajek, David
Calatroni, Sergio
Chiggiato, Paolo
Colling, Miriam
Di Girolamo, Beniamino
Garcia-Tabares Valdivieso, Elisa
Jones, Thomas
McIntosh, Peter
Taborelli, Mauro
Wackerow, Stefan
author_facet Sitko, Monika
Abdolvand, Amin
Baglin, Vincent
Bajek, David
Calatroni, Sergio
Chiggiato, Paolo
Colling, Miriam
Di Girolamo, Beniamino
Garcia-Tabares Valdivieso, Elisa
Jones, Thomas
McIntosh, Peter
Taborelli, Mauro
Wackerow, Stefan
author_sort Sitko, Monika
collection CERN
description The LHC operation has proven that the electron cloud could be a significant limiting factor in machine performance, in particular for future High Luminosity LHC (HL-LHC) beams. Electron clouds, generated by electron multipacting in the beam pipes, leads to beam instabilities and beam-induced heat load in cryogenic systems. Laser Engineered Surface Structures (LESS) is a novel surface treatment which changes the morphology of the internal surfaces of vacuum chambers. The surface modification results in a reduced secondary electron yield (SEY) and, consequently, in the eradication of the electron multipacting. Low SEY values of the treated surfaces and flexibility in choosing the laser parameters make LESS a promising treatment for future accelerators. LESS can be applied both in new and existing accelerators owing to the possibility of automated in-situ treatment. This approach has been developed and optimised for the LHC beam screens in which the electron cloud has to be mitigated before the HL-LHC upgrade. We will present the latest steps towards the implementation of LESS.
id oai-inspirehep.net-1690825
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16908252019-09-30T06:29:59Zdoi:10.18429/JACoW-IPAC2018-TUZGBE3http://cds.cern.ch/record/2666553engSitko, MonikaAbdolvand, AminBaglin, VincentBajek, DavidCalatroni, SergioChiggiato, PaoloColling, MiriamDi Girolamo, BeniaminoGarcia-Tabares Valdivieso, ElisaJones, ThomasMcIntosh, PeterTaborelli, MauroWackerow, StefanTowards the Implementation of Laser Engineered Surface Structures for Electron Cloud MitigationAccelerators and Storage RingsThe LHC operation has proven that the electron cloud could be a significant limiting factor in machine performance, in particular for future High Luminosity LHC (HL-LHC) beams. Electron clouds, generated by electron multipacting in the beam pipes, leads to beam instabilities and beam-induced heat load in cryogenic systems. Laser Engineered Surface Structures (LESS) is a novel surface treatment which changes the morphology of the internal surfaces of vacuum chambers. The surface modification results in a reduced secondary electron yield (SEY) and, consequently, in the eradication of the electron multipacting. Low SEY values of the treated surfaces and flexibility in choosing the laser parameters make LESS a promising treatment for future accelerators. LESS can be applied both in new and existing accelerators owing to the possibility of automated in-situ treatment. This approach has been developed and optimised for the LHC beam screens in which the electron cloud has to be mitigated before the HL-LHC upgrade. We will present the latest steps towards the implementation of LESS.oai:inspirehep.net:16908252018
spellingShingle Accelerators and Storage Rings
Sitko, Monika
Abdolvand, Amin
Baglin, Vincent
Bajek, David
Calatroni, Sergio
Chiggiato, Paolo
Colling, Miriam
Di Girolamo, Beniamino
Garcia-Tabares Valdivieso, Elisa
Jones, Thomas
McIntosh, Peter
Taborelli, Mauro
Wackerow, Stefan
Towards the Implementation of Laser Engineered Surface Structures for Electron Cloud Mitigation
title Towards the Implementation of Laser Engineered Surface Structures for Electron Cloud Mitigation
title_full Towards the Implementation of Laser Engineered Surface Structures for Electron Cloud Mitigation
title_fullStr Towards the Implementation of Laser Engineered Surface Structures for Electron Cloud Mitigation
title_full_unstemmed Towards the Implementation of Laser Engineered Surface Structures for Electron Cloud Mitigation
title_short Towards the Implementation of Laser Engineered Surface Structures for Electron Cloud Mitigation
title_sort towards the implementation of laser engineered surface structures for electron cloud mitigation
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2018-TUZGBE3
http://cds.cern.ch/record/2666553
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