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SLAC/CERN high gradient tests on an X-band accelerating section

High frequency linear collider schemes envisage the use of rather high accelerating gradients: 50 to 100 MV/m for X-band and 80 MV/m for CLIC. Because these gradients are well above those commonly used in accelerators, high gradient studies of high frequency structures have been initiated and test f...

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Autores principales: Wang, J W, Loew, G A, Loewen, R J, Ruth, Ronald D, Vlieks, A E, Wilson, Ian H, Wuensch, Walter
Lenguaje:eng
Publicado: 1995
Materias:
Acceso en línea:http://cds.cern.ch/record/281962
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author Wang, J W
Loew, G A
Loewen, R J
Ruth, Ronald D
Vlieks, A E
Wilson, Ian H
Wuensch, Walter
author_facet Wang, J W
Loew, G A
Loewen, R J
Ruth, Ronald D
Vlieks, A E
Wilson, Ian H
Wuensch, Walter
author_sort Wang, J W
collection CERN
description High frequency linear collider schemes envisage the use of rather high accelerating gradients: 50 to 100 MV/m for X-band and 80 MV/m for CLIC. Because these gradients are well above those commonly used in accelerators, high gradient studies of high frequency structures have been initiated and test facilities have been constructed at KEK [1], SLAC [2] and CERN [3]. The studies seek to demonstrate that the above mentioned gradients are both achievable and practical. There is no well-defined criterion for the maximum acceptable level of dark current but it must be low enough not to generate unacceptable transverse wakefields, disturb beam position monitor readings or cause RF power losses. Because there are of the order of 10,000 accelerating sections in a high frequency linear collider, the conditioning process should not be too long or difficult. The test facilities have been instrumented to allow investigation of field emission and RF breakdown mechanisms. With an understanding of these effects, the high gradient performance of accelerating sections may be improved through modifications in geometry, fabrication methods and surface finish. These high gradient test facilities also allow the ultimate performance of high frequency/short pulse length accelerating structures to be probed. This report describes the high gradient test at SLAC of an X-band accelerating section built at CERN using technology developed for CLIC.
id cern-281962
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1995
record_format invenio
spelling cern-2819622023-08-17T09:44:18Zhttp://cds.cern.ch/record/281962engWang, J WLoew, G ALoewen, R JRuth, Ronald DVlieks, A EWilson, Ian HWuensch, WalterSLAC/CERN high gradient tests on an X-band accelerating sectionAccelerators and Storage RingsHigh frequency linear collider schemes envisage the use of rather high accelerating gradients: 50 to 100 MV/m for X-band and 80 MV/m for CLIC. Because these gradients are well above those commonly used in accelerators, high gradient studies of high frequency structures have been initiated and test facilities have been constructed at KEK [1], SLAC [2] and CERN [3]. The studies seek to demonstrate that the above mentioned gradients are both achievable and practical. There is no well-defined criterion for the maximum acceptable level of dark current but it must be low enough not to generate unacceptable transverse wakefields, disturb beam position monitor readings or cause RF power losses. Because there are of the order of 10,000 accelerating sections in a high frequency linear collider, the conditioning process should not be too long or difficult. The test facilities have been instrumented to allow investigation of field emission and RF breakdown mechanisms. With an understanding of these effects, the high gradient performance of accelerating sections may be improved through modifications in geometry, fabrication methods and surface finish. These high gradient test facilities also allow the ultimate performance of high frequency/short pulse length accelerating structures to be probed. This report describes the high gradient test at SLAC of an X-band accelerating section built at CERN using technology developed for CLIC.CERN-SL-95-27-RFCLIC-Note-283oai:cds.cern.ch:2819621995-05-17
spellingShingle Accelerators and Storage Rings
Wang, J W
Loew, G A
Loewen, R J
Ruth, Ronald D
Vlieks, A E
Wilson, Ian H
Wuensch, Walter
SLAC/CERN high gradient tests on an X-band accelerating section
title SLAC/CERN high gradient tests on an X-band accelerating section
title_full SLAC/CERN high gradient tests on an X-band accelerating section
title_fullStr SLAC/CERN high gradient tests on an X-band accelerating section
title_full_unstemmed SLAC/CERN high gradient tests on an X-band accelerating section
title_short SLAC/CERN high gradient tests on an X-band accelerating section
title_sort slac/cern high gradient tests on an x-band accelerating section
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/281962
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