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Comparison of High Gradient Performance in Varying Cavity Geometries

Four types of CLIC prototype TW accelerator structures were high-gradient tested at Nextef, KEK, up to 100 MV/m level and the fifth is under test now. The ramping speed of each processing and the resultant breakdown rate were compared among them. From this comparison, it was found that the ramping s...

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Autores principales: Higo, Toshiyasu, Abe, Tetsuo, Arakida, Yoshio, Higashi, Yasuo, Matsumoto, Shuji, Shidara, Tetsuo, Takatomi, Toshikazu, Yamanaka, Masashi, Grudiev, Alexej, Riddone, Germana, Wuensch, Walter
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/2110690
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author Higo, Toshiyasu
Abe, Tetsuo
Arakida, Yoshio
Higashi, Yasuo
Matsumoto, Shuji
Shidara, Tetsuo
Takatomi, Toshikazu
Yamanaka, Masashi
Grudiev, Alexej
Riddone, Germana
Wuensch, Walter
author_facet Higo, Toshiyasu
Abe, Tetsuo
Arakida, Yoshio
Higashi, Yasuo
Matsumoto, Shuji
Shidara, Tetsuo
Takatomi, Toshikazu
Yamanaka, Masashi
Grudiev, Alexej
Riddone, Germana
Wuensch, Walter
author_sort Higo, Toshiyasu
collection CERN
description Four types of CLIC prototype TW accelerator structures were high-gradient tested at Nextef, KEK, up to 100 MV/m level and the fifth is under test now. The ramping speed of each processing and the resultant breakdown rate were compared among them. From this comparison, it was found that the ramping speed of the structures with opening ports for HOM damping with magnetic coupling became slow and the resultant breakdown rate became high. It was also found that that with lower surface magnetic field showed faster ramping in processing and lower breakdown rate. This indicates the role of the magnetic field on vacuum breakdowns in copper structure at the region of several tens to 100 MV/m. In this paper, we review the processing stage and the high gradient performance of these structures trying to discuss the relevant parameters, surface electric field, surface magnetic field and other parameters such as Sc, “complex pointing vector”, to the performance difference.
id oai-inspirehep.net-1338978
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling oai-inspirehep.net-13389782019-09-30T06:29:59Zhttp://cds.cern.ch/record/2110690engHigo, ToshiyasuAbe, TetsuoArakida, YoshioHigashi, YasuoMatsumoto, ShujiShidara, TetsuoTakatomi, ToshikazuYamanaka, MasashiGrudiev, AlexejRiddone, GermanaWuensch, WalterComparison of High Gradient Performance in Varying Cavity GeometriesAccelerators and Storage RingsFour types of CLIC prototype TW accelerator structures were high-gradient tested at Nextef, KEK, up to 100 MV/m level and the fifth is under test now. The ramping speed of each processing and the resultant breakdown rate were compared among them. From this comparison, it was found that the ramping speed of the structures with opening ports for HOM damping with magnetic coupling became slow and the resultant breakdown rate became high. It was also found that that with lower surface magnetic field showed faster ramping in processing and lower breakdown rate. This indicates the role of the magnetic field on vacuum breakdowns in copper structure at the region of several tens to 100 MV/m. In this paper, we review the processing stage and the high gradient performance of these structures trying to discuss the relevant parameters, surface electric field, surface magnetic field and other parameters such as Sc, “complex pointing vector”, to the performance difference.oai:inspirehep.net:13389782013
spellingShingle Accelerators and Storage Rings
Higo, Toshiyasu
Abe, Tetsuo
Arakida, Yoshio
Higashi, Yasuo
Matsumoto, Shuji
Shidara, Tetsuo
Takatomi, Toshikazu
Yamanaka, Masashi
Grudiev, Alexej
Riddone, Germana
Wuensch, Walter
Comparison of High Gradient Performance in Varying Cavity Geometries
title Comparison of High Gradient Performance in Varying Cavity Geometries
title_full Comparison of High Gradient Performance in Varying Cavity Geometries
title_fullStr Comparison of High Gradient Performance in Varying Cavity Geometries
title_full_unstemmed Comparison of High Gradient Performance in Varying Cavity Geometries
title_short Comparison of High Gradient Performance in Varying Cavity Geometries
title_sort comparison of high gradient performance in varying cavity geometries
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2110690
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