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Electromagnetic Characterization of Materials for the CLIC Damping Rings

The performance of the Compact LinearCollider (CLIC) damping rings (DR) is likely to be limited by collective effects due to the unprecedented brilliance of the beams. Coating will be used in both electron (EDR) and positron damping rings (PDR) to suppress effects like electron cloud formation or io...

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Autores principales: Koukovini-Platia, E, De Michele, G, Zannini, C, Rumolo, G
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1498081
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author Koukovini-Platia, E
De Michele, G
Zannini, C
Rumolo, G
author_facet Koukovini-Platia, E
De Michele, G
Zannini, C
Rumolo, G
author_sort Koukovini-Platia, E
collection CERN
description The performance of the Compact LinearCollider (CLIC) damping rings (DR) is likely to be limited by collective effects due to the unprecedented brilliance of the beams. Coating will be used in both electron (EDR) and positron damping rings (PDR) to suppress effects like electron cloud formation or ion instabilities. The impedance modeling of the chambers, necessary for the instabilities studies which will ensure safe operation under nominal conditions, must include the contribution from the coating materials applied for electron cloud mitigation and/or ultra-low vacuumpressure. This advocates for a correct characterization of this impedance in a high frequency range, which is still widely unexplored. The electrical conductivity of the materials in the frequency range of few GHz is determined with the waveguide method, based on a combination of experimental measurements of the complex transmission coefficient S21 and CST 3D electromagnetic (EM) simulations.
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spelling cern-14980812022-08-17T13:32:31Z http://cds.cern.ch/record/1498081 eng Koukovini-Platia, E De Michele, G Zannini, C Rumolo, G Electromagnetic Characterization of Materials for the CLIC Damping Rings Accelerators and Storage Rings 4: AccNet: Accelerator Science Networks The performance of the Compact LinearCollider (CLIC) damping rings (DR) is likely to be limited by collective effects due to the unprecedented brilliance of the beams. Coating will be used in both electron (EDR) and positron damping rings (PDR) to suppress effects like electron cloud formation or ion instabilities. The impedance modeling of the chambers, necessary for the instabilities studies which will ensure safe operation under nominal conditions, must include the contribution from the coating materials applied for electron cloud mitigation and/or ultra-low vacuumpressure. This advocates for a correct characterization of this impedance in a high frequency range, which is still widely unexplored. The electrical conductivity of the materials in the frequency range of few GHz is determined with the waveguide method, based on a combination of experimental measurements of the complex transmission coefficient S21 and CST 3D electromagnetic (EM) simulations. info:eu-repo/grantAgreement/EC/FP7/227579 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1498081 2012
spellingShingle Accelerators and Storage Rings
4: AccNet: Accelerator Science Networks
Koukovini-Platia, E
De Michele, G
Zannini, C
Rumolo, G
Electromagnetic Characterization of Materials for the CLIC Damping Rings
title Electromagnetic Characterization of Materials for the CLIC Damping Rings
title_full Electromagnetic Characterization of Materials for the CLIC Damping Rings
title_fullStr Electromagnetic Characterization of Materials for the CLIC Damping Rings
title_full_unstemmed Electromagnetic Characterization of Materials for the CLIC Damping Rings
title_short Electromagnetic Characterization of Materials for the CLIC Damping Rings
title_sort electromagnetic characterization of materials for the clic damping rings
topic Accelerators and Storage Rings
4: AccNet: Accelerator Science Networks
url http://cds.cern.ch/record/1498081
http://cds.cern.ch/record/1498081
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AT demicheleg electromagneticcharacterizationofmaterialsfortheclicdampingrings
AT zanninic electromagneticcharacterizationofmaterialsfortheclicdampingrings
AT rumolog electromagneticcharacterizationofmaterialsfortheclicdampingrings