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Construction and Commissioning of the S-Band High-Gradient RF Laboratory at IFIC

An S-Band High-Gradient (HG) Radio Frequency (RF) laboratory is under construction and commissioning at IFIC. The purpose of the laboratory is to perform investigations of high-gradient phenomena and to develop normal-conducting RF technology, with special focus on RF systems for hadron-therapy. The...

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Autores principales: Esperante Pereira, Daniel, Blanch Gutiérrez, Cesar, Boronat, Marça, Fuster, Juan, Gonzalez Iglesias, Daniel, Vnuchenko, Anna, Catalán Lasheras, Nuria, Gimeno, Benito, McMonagle, Gerard, Syratchev, Igor, Wuensch, Walter, Woolley, B, Faus-Golfe, Angeles
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2018-THPAL005
https://dx.doi.org/10.1088/1742-6596/1067/8/082024
http://cds.cern.ch/record/2646745
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author Esperante Pereira, Daniel
Blanch Gutiérrez, Cesar
Boronat, Marça
Fuster, Juan
Gonzalez Iglesias, Daniel
Vnuchenko, Anna
Catalán Lasheras, Nuria
Gimeno, Benito
McMonagle, Gerard
Syratchev, Igor
Wuensch, Walter
Woolley, B
Faus-Golfe, Angeles
author_facet Esperante Pereira, Daniel
Blanch Gutiérrez, Cesar
Boronat, Marça
Fuster, Juan
Gonzalez Iglesias, Daniel
Vnuchenko, Anna
Catalán Lasheras, Nuria
Gimeno, Benito
McMonagle, Gerard
Syratchev, Igor
Wuensch, Walter
Woolley, B
Faus-Golfe, Angeles
author_sort Esperante Pereira, Daniel
collection CERN
description An S-Band High-Gradient (HG) Radio Frequency (RF) laboratory is under construction and commissioning at IFIC. The purpose of the laboratory is to perform investigations of high-gradient phenomena and to develop normal-conducting RF technology, with special focus on RF systems for hadron-therapy. The layout of the facility is derived from the scheme of the Xbox-3 test facility at CERN* and uses medium peak-power (7.5 MW) and high repetition rate (400 Hz) klystrons, whose RF output is combined to drive two testing slots to the required power. The design and construction of the various components of the system started in 2016 and has been completed. The installation and commissioning of the laboratory is progressing, with first results expected before mid 2018. The technical characteristics of the different elements of the system and the commissioning status together with preliminary results are described.
id oai-inspirehep.net-1689727
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16897272023-07-20T15:03:27Zdoi:10.18429/JACoW-IPAC2018-THPAL005doi:10.1088/1742-6596/1067/8/082024http://cds.cern.ch/record/2646745engEsperante Pereira, DanielBlanch Gutiérrez, CesarBoronat, MarçaFuster, JuanGonzalez Iglesias, DanielVnuchenko, AnnaCatalán Lasheras, NuriaGimeno, BenitoMcMonagle, GerardSyratchev, IgorWuensch, WalterWoolley, BFaus-Golfe, AngelesConstruction and Commissioning of the S-Band High-Gradient RF Laboratory at IFICAccelerators and Storage RingsAn S-Band High-Gradient (HG) Radio Frequency (RF) laboratory is under construction and commissioning at IFIC. The purpose of the laboratory is to perform investigations of high-gradient phenomena and to develop normal-conducting RF technology, with special focus on RF systems for hadron-therapy. The layout of the facility is derived from the scheme of the Xbox-3 test facility at CERN* and uses medium peak-power (7.5 MW) and high repetition rate (400 Hz) klystrons, whose RF output is combined to drive two testing slots to the required power. The design and construction of the various components of the system started in 2016 and has been completed. The installation and commissioning of the laboratory is progressing, with first results expected before mid 2018. The technical characteristics of the different elements of the system and the commissioning status together with preliminary results are described.An S-band High-Gradient (HG) Radio Frequency (RF) laboratory is under construction and commissioning at IFIC. The purpose of the laboratory is to perform investigations of high-gradient phenomena and to develop normal-conducting RF technology, with special focus on RF systems for hadron-therapy. The layout of the facility is derived from the scheme of the Xbox-3 test facility at CERN [1] and uses medium peak-power (7.5 MW) and high repetition rate (400 Hz) klystrons, whose RF output is combined to drive two testing slots to the required power. The design and construction of the various components of the system started in 2016 and has been completed. The installation and commissioning of the laboratory is progressing, with first results expected before mid-2018. The technical characteristics of the different elements of the system and the commissioning status together with preliminary results are described.CERN-ACC-2018-158CLIC-Note-1151oai:inspirehep.net:16897272018
spellingShingle Accelerators and Storage Rings
Esperante Pereira, Daniel
Blanch Gutiérrez, Cesar
Boronat, Marça
Fuster, Juan
Gonzalez Iglesias, Daniel
Vnuchenko, Anna
Catalán Lasheras, Nuria
Gimeno, Benito
McMonagle, Gerard
Syratchev, Igor
Wuensch, Walter
Woolley, B
Faus-Golfe, Angeles
Construction and Commissioning of the S-Band High-Gradient RF Laboratory at IFIC
title Construction and Commissioning of the S-Band High-Gradient RF Laboratory at IFIC
title_full Construction and Commissioning of the S-Band High-Gradient RF Laboratory at IFIC
title_fullStr Construction and Commissioning of the S-Band High-Gradient RF Laboratory at IFIC
title_full_unstemmed Construction and Commissioning of the S-Band High-Gradient RF Laboratory at IFIC
title_short Construction and Commissioning of the S-Band High-Gradient RF Laboratory at IFIC
title_sort construction and commissioning of the s-band high-gradient rf laboratory at ific
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2018-THPAL005
https://dx.doi.org/10.1088/1742-6596/1067/8/082024
http://cds.cern.ch/record/2646745
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