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30 GHz High-Gradient Accelerating Structure Test Results

The CLIC study is high power testing accelerating structures in a number of different materials and accelerating structure designs to understand the physics of breakdown, determine the appropriate scaling of performance and in particular to find ways to increase achievable accelerating gradient. The...

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Autores principales: Rodríguez, J, Aksakal, H, Arnau-Izquierdo, G, Corsini, R, Döbert, S, Fandos, R, Grudiev, A, Johnson, M, Mete, O, Nergiz, Z, Syratchev, I, Taborelli, M, Tecker, F, Urschütz, P, Wuensch, W
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:http://cds.cern.ch/record/1055563
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author Rodríguez, J
Aksakal, H
Arnau-Izquierdo, G
Corsini, R
Döbert, S
Fandos, R
Grudiev, A
Johnson, M
Mete, O
Nergiz, Z
Syratchev, I
Taborelli, M
Tecker, F
Urschütz, P
Wuensch, W
author_facet Rodríguez, J
Aksakal, H
Arnau-Izquierdo, G
Corsini, R
Döbert, S
Fandos, R
Grudiev, A
Johnson, M
Mete, O
Nergiz, Z
Syratchev, I
Taborelli, M
Tecker, F
Urschütz, P
Wuensch, W
author_sort Rodríguez, J
collection CERN
description The CLIC study is high power testing accelerating structures in a number of different materials and accelerating structure designs to understand the physics of breakdown, determine the appropriate scaling of performance and in particular to find ways to increase achievable accelerating gradient. The most recent 30 GHz structures which have been tested include damped structures in copper, molybdenum, titanium and aluminum. The results from these new structures are presented in this paper.
id cern-1055563
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
record_format invenio
spelling cern-10555632023-07-20T15:03:47Zhttp://cds.cern.ch/record/1055563engRodríguez, JAksakal, HArnau-Izquierdo, GCorsini, RDöbert, SFandos, RGrudiev, AJohnson, MMete, ONergiz, ZSyratchev, ITaborelli, MTecker, FUrschütz, PWuensch, W30 GHz High-Gradient Accelerating Structure Test ResultsAccelerators and Storage RingsThe CLIC study is high power testing accelerating structures in a number of different materials and accelerating structure designs to understand the physics of breakdown, determine the appropriate scaling of performance and in particular to find ways to increase achievable accelerating gradient. The most recent 30 GHz structures which have been tested include damped structures in copper, molybdenum, titanium and aluminum. The results from these new structures are presented in this paper.CERN-AB-2007-058CLIC-Note-719oai:cds.cern.ch:10555632007
spellingShingle Accelerators and Storage Rings
Rodríguez, J
Aksakal, H
Arnau-Izquierdo, G
Corsini, R
Döbert, S
Fandos, R
Grudiev, A
Johnson, M
Mete, O
Nergiz, Z
Syratchev, I
Taborelli, M
Tecker, F
Urschütz, P
Wuensch, W
30 GHz High-Gradient Accelerating Structure Test Results
title 30 GHz High-Gradient Accelerating Structure Test Results
title_full 30 GHz High-Gradient Accelerating Structure Test Results
title_fullStr 30 GHz High-Gradient Accelerating Structure Test Results
title_full_unstemmed 30 GHz High-Gradient Accelerating Structure Test Results
title_short 30 GHz High-Gradient Accelerating Structure Test Results
title_sort 30 ghz high-gradient accelerating structure test results
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1055563
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