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Long-time simulation of LHC beam propagation in electron clouds

In this report we show the simulation results of single-bunch instabilities caused by interaction of a proton beam with an electron cloud for the Large Hadron Collider (LHC) using the code QuickPIC [1]. We describe three new results: 1) We test the effect of the space charge of the beam on itself; 2...

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Detalles Bibliográficos
Autores principales: Feng, Bing, Benedetto, Elena, Decyk, Viktor K, Ghalam, Ali F, Katsouleas, Thomas C, Mori, Warren, Zimmermann, Frank
Lenguaje:eng
Publicado: 2005
Materias:
Acceso en línea:http://cds.cern.ch/record/928593
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author Feng, Bing
Benedetto, Elena
Decyk, Viktor K
Ghalam, Ali F
Katsouleas, Thomas C
Mori, Warren
Zimmermann, Frank
author_facet Feng, Bing
Benedetto, Elena
Decyk, Viktor K
Ghalam, Ali F
Katsouleas, Thomas C
Mori, Warren
Zimmermann, Frank
author_sort Feng, Bing
collection CERN
description In this report we show the simulation results of single-bunch instabilities caused by interaction of a proton beam with an electron cloud for the Large Hadron Collider (LHC) using the code QuickPIC [1]. We describe three new results: 1) We test the effect of the space charge of the beam on itself; 2) we add the effect of dispersion in the equation of motion in the x direction, and 3) we extend previous modeling by an order of magnitude (from 50ms to 500ms) of beam circulation time. The effect of including space charge is to change the emittance growth by less than a few percent. Including dispersion changes the plane of instability but keeps the total emittance approximately the same. The longer runs indicate that the long term growth of electron cloud instability of the LHC beam cannot be obtained by extrapolating the results of short runs.
id cern-928593
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2005
record_format invenio
spelling cern-9285932022-08-17T13:36:04Zhttp://cds.cern.ch/record/928593engFeng, BingBenedetto, ElenaDecyk, Viktor KGhalam, Ali FKatsouleas, Thomas CMori, WarrenZimmermann, FrankLong-time simulation of LHC beam propagation in electron cloudsAccelerators and Storage RingsIn this report we show the simulation results of single-bunch instabilities caused by interaction of a proton beam with an electron cloud for the Large Hadron Collider (LHC) using the code QuickPIC [1]. We describe three new results: 1) We test the effect of the space charge of the beam on itself; 2) we add the effect of dispersion in the equation of motion in the x direction, and 3) we extend previous modeling by an order of magnitude (from 50ms to 500ms) of beam circulation time. The effect of including space charge is to change the emittance growth by less than a few percent. Including dispersion changes the plane of instability but keeps the total emittance approximately the same. The longer runs indicate that the long term growth of electron cloud instability of the LHC beam cannot be obtained by extrapolating the results of short runs.oai:cds.cern.ch:9285932005
spellingShingle Accelerators and Storage Rings
Feng, Bing
Benedetto, Elena
Decyk, Viktor K
Ghalam, Ali F
Katsouleas, Thomas C
Mori, Warren
Zimmermann, Frank
Long-time simulation of LHC beam propagation in electron clouds
title Long-time simulation of LHC beam propagation in electron clouds
title_full Long-time simulation of LHC beam propagation in electron clouds
title_fullStr Long-time simulation of LHC beam propagation in electron clouds
title_full_unstemmed Long-time simulation of LHC beam propagation in electron clouds
title_short Long-time simulation of LHC beam propagation in electron clouds
title_sort long-time simulation of lhc beam propagation in electron clouds
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/928593
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