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Analysis of long-range wakefields in CLIC main Linac Accelerating Structures with Damping Loads

The baseline design of the CLIC accelerating structure foresees a moderate detuning and heavy damping of high order modes (HOMs), which are the source of long-range transverse wakefields. Such unwanted fields produce bunch-to-bunch instabilities so the HOMs must be suppressed. In order to damp these...

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Detalles Bibliográficos
Autores principales: De Michele, G, Grudiev, A
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1459572
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author De Michele, G
Grudiev, A
author_facet De Michele, G
Grudiev, A
author_sort De Michele, G
collection CERN
description The baseline design of the CLIC accelerating structure foresees a moderate detuning and heavy damping of high order modes (HOMs), which are the source of long-range transverse wakefields. Such unwanted fields produce bunch-to-bunch instabilities so the HOMs must be suppressed. In order to damp these modes, the CLIC RF structure is equipped with lossy material inserted into four rectangular waveguides coupled to each accelerating cell. The lossy material absorbs EM (electromagnetic) wave energy with little reflection back to the accelerating cells. In the past, computations of the long-range wake of CLIC accelerating modes have been done using perfectly absorbing boundaries to terminate the damping waveguides. In this paper, 3D EM simulations of CLIC baseline accelerating structure with HOMs damping loads will be presented. A comparison between different EM codes (GdfidL, CST PARTICLE STUDIO®) will be discussed as well as the analysis of different types of absorbing materials with respect to the wakefields damping.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
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spelling cern-14595722023-07-20T15:05:58Zhttp://cds.cern.ch/record/1459572engDe Michele, GGrudiev, AAnalysis of long-range wakefields in CLIC main Linac Accelerating Structures with Damping LoadsAccelerators and Storage RingsThe baseline design of the CLIC accelerating structure foresees a moderate detuning and heavy damping of high order modes (HOMs), which are the source of long-range transverse wakefields. Such unwanted fields produce bunch-to-bunch instabilities so the HOMs must be suppressed. In order to damp these modes, the CLIC RF structure is equipped with lossy material inserted into four rectangular waveguides coupled to each accelerating cell. The lossy material absorbs EM (electromagnetic) wave energy with little reflection back to the accelerating cells. In the past, computations of the long-range wake of CLIC accelerating modes have been done using perfectly absorbing boundaries to terminate the damping waveguides. In this paper, 3D EM simulations of CLIC baseline accelerating structure with HOMs damping loads will be presented. A comparison between different EM codes (GdfidL, CST PARTICLE STUDIO®) will be discussed as well as the analysis of different types of absorbing materials with respect to the wakefields damping.CERN-ATS-2012-118CLIC-Note-976oai:cds.cern.ch:14595722012-05-20
spellingShingle Accelerators and Storage Rings
De Michele, G
Grudiev, A
Analysis of long-range wakefields in CLIC main Linac Accelerating Structures with Damping Loads
title Analysis of long-range wakefields in CLIC main Linac Accelerating Structures with Damping Loads
title_full Analysis of long-range wakefields in CLIC main Linac Accelerating Structures with Damping Loads
title_fullStr Analysis of long-range wakefields in CLIC main Linac Accelerating Structures with Damping Loads
title_full_unstemmed Analysis of long-range wakefields in CLIC main Linac Accelerating Structures with Damping Loads
title_short Analysis of long-range wakefields in CLIC main Linac Accelerating Structures with Damping Loads
title_sort analysis of long-range wakefields in clic main linac accelerating structures with damping loads
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1459572
work_keys_str_mv AT demicheleg analysisoflongrangewakefieldsinclicmainlinacacceleratingstructureswithdampingloads
AT grudieva analysisoflongrangewakefieldsinclicmainlinacacceleratingstructureswithdampingloads