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A high-gradient test of a 30 GHz copper accelerating structure
The CLIC study is investigating a number of different materials at different frequencies in order to find ways to increase achievable accelerating gradient and to understand what are the important parameters for high-gradient operation. So far a series of rf tests have been made with a set of identi...
Autores principales: | , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2006
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/999489 |
_version_ | 1780911647492145152 |
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author | Corsini, Roberto Döbert, Steffen Fandos, Raquel Grudiev, Alexei Jensen, Erk Mete, Oznur Ramsvik, Trond Rodríguez, José Alberto Sladen, Jonathan P H Syratchev, Igor V Taborelli, Mauro Tecker, Frank A Urschütz, Peter Wilson, Ian H Wuensch, Walter |
author_facet | Corsini, Roberto Döbert, Steffen Fandos, Raquel Grudiev, Alexei Jensen, Erk Mete, Oznur Ramsvik, Trond Rodríguez, José Alberto Sladen, Jonathan P H Syratchev, Igor V Taborelli, Mauro Tecker, Frank A Urschütz, Peter Wilson, Ian H Wuensch, Walter |
author_sort | Corsini, Roberto |
collection | CERN |
description | The CLIC study is investigating a number of different materials at different frequencies in order to find ways to increase achievable accelerating gradient and to understand what are the important parameters for high-gradient operation. So far a series of rf tests have been made with a set of identical-geometry 30 GHz and X-band structures in copper, tungsten and molybdenum. A new test of a 30 GHz copper accelerating structure has been completed in CTF3 with pulse lengths up to 70 ns. The new results are presented and compared to the previous structures to determine dependencies of quantities such accelerating gradient, material, frequency, pulse length, conditioning rate, breakdown rate and surface damage. |
id | cern-999489 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2006 |
record_format | invenio |
spelling | cern-9994892023-07-20T15:04:42Zhttp://cds.cern.ch/record/999489engCorsini, RobertoDöbert, SteffenFandos, RaquelGrudiev, AlexeiJensen, ErkMete, OznurRamsvik, TrondRodríguez, José AlbertoSladen, Jonathan P HSyratchev, Igor VTaborelli, MauroTecker, Frank AUrschütz, PeterWilson, Ian HWuensch, WalterA high-gradient test of a 30 GHz copper accelerating structureAccelerators and Storage RingsThe CLIC study is investigating a number of different materials at different frequencies in order to find ways to increase achievable accelerating gradient and to understand what are the important parameters for high-gradient operation. So far a series of rf tests have been made with a set of identical-geometry 30 GHz and X-band structures in copper, tungsten and molybdenum. A new test of a 30 GHz copper accelerating structure has been completed in CTF3 with pulse lengths up to 70 ns. The new results are presented and compared to the previous structures to determine dependencies of quantities such accelerating gradient, material, frequency, pulse length, conditioning rate, breakdown rate and surface damage.CERN-OPEN-2006-071CLIC-Note-698oai:cds.cern.ch:9994892006-11-20 |
spellingShingle | Accelerators and Storage Rings Corsini, Roberto Döbert, Steffen Fandos, Raquel Grudiev, Alexei Jensen, Erk Mete, Oznur Ramsvik, Trond Rodríguez, José Alberto Sladen, Jonathan P H Syratchev, Igor V Taborelli, Mauro Tecker, Frank A Urschütz, Peter Wilson, Ian H Wuensch, Walter A high-gradient test of a 30 GHz copper accelerating structure |
title | A high-gradient test of a 30 GHz copper accelerating structure |
title_full | A high-gradient test of a 30 GHz copper accelerating structure |
title_fullStr | A high-gradient test of a 30 GHz copper accelerating structure |
title_full_unstemmed | A high-gradient test of a 30 GHz copper accelerating structure |
title_short | A high-gradient test of a 30 GHz copper accelerating structure |
title_sort | high-gradient test of a 30 ghz copper accelerating structure |
topic | Accelerators and Storage Rings |
url | http://cds.cern.ch/record/999489 |
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