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Multi-bunch effect of resistive wall in the Beam Delivery System of the Compact Linear Collider

Wake fields in the CLIC Beam Delivery System (BDS) can cause severe single or multi-bunch effects leading to luminosity loss. The main contributors in the BDS are geometric and resistive wall wake fields of the collimators and resistive wall wakes of the beam pipe. The present work focuses only on t...

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Autores principales: Mutzner, R, Mounet, R, Rumolo, G, Tomas, R, Pieloni, T
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1269903
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author Mutzner, R
Mounet, R
Rumolo, G
Tomas, R
Pieloni, T
author_facet Mutzner, R
Mounet, R
Rumolo, G
Tomas, R
Pieloni, T
author_sort Mutzner, R
collection CERN
description Wake fields in the CLIC Beam Delivery System (BDS) can cause severe single or multi-bunch effects leading to luminosity loss. The main contributors in the BDS are geometric and resistive wall wake fields of the collimators and resistive wall wakes of the beam pipe. The present work focuses only on the multi-bunch effects from resistive wall. Using particle tracking with wake fields through the BDS, we have established the aperture radius, above which the effect of the wake fields becomes negligible. Our simulations were later extended to include a realistic aperture model along the BDS as well as the collimators. The two cases of 3 TeV and 500 GeV have been examined.
id cern-1269903
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-12699032022-08-17T13:24:33Zhttp://cds.cern.ch/record/1269903engMutzner, RMounet, RRumolo, GTomas, RPieloni, TMulti-bunch effect of resistive wall in the Beam Delivery System of the Compact Linear ColliderAccelerators and Storage RingsWake fields in the CLIC Beam Delivery System (BDS) can cause severe single or multi-bunch effects leading to luminosity loss. The main contributors in the BDS are geometric and resistive wall wake fields of the collimators and resistive wall wakes of the beam pipe. The present work focuses only on the multi-bunch effects from resistive wall. Using particle tracking with wake fields through the BDS, we have established the aperture radius, above which the effect of the wake fields becomes negligible. Our simulations were later extended to include a realistic aperture model along the BDS as well as the collimators. The two cases of 3 TeV and 500 GeV have been examined.CERN-ATS-2010-072oai:cds.cern.ch:12699032010-06-04
spellingShingle Accelerators and Storage Rings
Mutzner, R
Mounet, R
Rumolo, G
Tomas, R
Pieloni, T
Multi-bunch effect of resistive wall in the Beam Delivery System of the Compact Linear Collider
title Multi-bunch effect of resistive wall in the Beam Delivery System of the Compact Linear Collider
title_full Multi-bunch effect of resistive wall in the Beam Delivery System of the Compact Linear Collider
title_fullStr Multi-bunch effect of resistive wall in the Beam Delivery System of the Compact Linear Collider
title_full_unstemmed Multi-bunch effect of resistive wall in the Beam Delivery System of the Compact Linear Collider
title_short Multi-bunch effect of resistive wall in the Beam Delivery System of the Compact Linear Collider
title_sort multi-bunch effect of resistive wall in the beam delivery system of the compact linear collider
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1269903
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AT mounetr multibuncheffectofresistivewallinthebeamdeliverysystemofthecompactlinearcollider
AT rumolog multibuncheffectofresistivewallinthebeamdeliverysystemofthecompactlinearcollider
AT tomasr multibuncheffectofresistivewallinthebeamdeliverysystemofthecompactlinearcollider
AT pielonit multibuncheffectofresistivewallinthebeamdeliverysystemofthecompactlinearcollider