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Beam-induced wakefield observation in X -band choke-mode cavities

The X-band choke-mode structure is currently being studied as an alternative design for the accelerating structure of the compact linear collider (CLIC) main linac. The geometry of the choke-mode structure is designed to ensure the strong suppression of the beam-induced long-range transverse wakefie...

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Autores principales: Zha, Hao, Jing, Chunguang, Qiu, Jiaqi, Wisniewski, Eric E, Conde, Manoel, Power, John G, Doran, Darrell S, Liu, Wanming, Shi, Jiaru, Li, Chen, Gai, Wei, Chen, Huaibi
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.19.081001
http://cds.cern.ch/record/2261957
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author Zha, Hao
Jing, Chunguang
Qiu, Jiaqi
Wisniewski, Eric E
Conde, Manoel
Power, John G
Doran, Darrell S
Liu, Wanming
Shi, Jiaru
Li, Chen
Gai, Wei
Chen, Huaibi
author_facet Zha, Hao
Jing, Chunguang
Qiu, Jiaqi
Wisniewski, Eric E
Conde, Manoel
Power, John G
Doran, Darrell S
Liu, Wanming
Shi, Jiaru
Li, Chen
Gai, Wei
Chen, Huaibi
author_sort Zha, Hao
collection CERN
description The X-band choke-mode structure is currently being studied as an alternative design for the accelerating structure of the compact linear collider (CLIC) main linac. The geometry of the choke-mode structure is designed to ensure the strong suppression of the beam-induced long-range transverse wakefield and therefore maintain the stability and quality of the beam in the CLIC main linac. Experiments conducted at the Argonne Wakefield Accelerator Facility are presented in this study to verify the design of the wakefield suppressor. The beam-induced radio frequency (rf) signals in a three-cell choke-mode structure were measured, and measured results show good agreement with the simulation results. The measured results also show strong damping in high-order dipolar modes with a quality factor Q of 10 to 20. The difference between the frequencies of the first and second dipole modes is about 3 GHz, which validates the special design of the cancelling dipole modes at the time of the succeeding bunch (0.5 ns).
id oai-inspirehep.net-1479335
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14793352021-05-03T07:48:07Zdoi:10.1103/PhysRevAccelBeams.19.081001http://cds.cern.ch/record/2261957engZha, HaoJing, ChunguangQiu, JiaqiWisniewski, Eric EConde, ManoelPower, John GDoran, Darrell SLiu, WanmingShi, JiaruLi, ChenGai, WeiChen, HuaibiBeam-induced wakefield observation in X -band choke-mode cavitiesAccelerators and Storage RingsThe X-band choke-mode structure is currently being studied as an alternative design for the accelerating structure of the compact linear collider (CLIC) main linac. The geometry of the choke-mode structure is designed to ensure the strong suppression of the beam-induced long-range transverse wakefield and therefore maintain the stability and quality of the beam in the CLIC main linac. Experiments conducted at the Argonne Wakefield Accelerator Facility are presented in this study to verify the design of the wakefield suppressor. The beam-induced radio frequency (rf) signals in a three-cell choke-mode structure were measured, and measured results show good agreement with the simulation results. The measured results also show strong damping in high-order dipolar modes with a quality factor Q of 10 to 20. The difference between the frequencies of the first and second dipole modes is about 3 GHz, which validates the special design of the cancelling dipole modes at the time of the succeeding bunch (0.5 ns).oai:inspirehep.net:14793352016
spellingShingle Accelerators and Storage Rings
Zha, Hao
Jing, Chunguang
Qiu, Jiaqi
Wisniewski, Eric E
Conde, Manoel
Power, John G
Doran, Darrell S
Liu, Wanming
Shi, Jiaru
Li, Chen
Gai, Wei
Chen, Huaibi
Beam-induced wakefield observation in X -band choke-mode cavities
title Beam-induced wakefield observation in X -band choke-mode cavities
title_full Beam-induced wakefield observation in X -band choke-mode cavities
title_fullStr Beam-induced wakefield observation in X -band choke-mode cavities
title_full_unstemmed Beam-induced wakefield observation in X -band choke-mode cavities
title_short Beam-induced wakefield observation in X -band choke-mode cavities
title_sort beam-induced wakefield observation in x -band choke-mode cavities
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevAccelBeams.19.081001
http://cds.cern.ch/record/2261957
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