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Compact Superconducting RF-Dipole Cavity Designs for Deflecting and Crabbing Applications

Over the years the superconducting parallel-bar designhas evolved into an rf-dipole cavity with improved proper-ties. The new rf-dipole design is considered for a numberof deflecting and crabbing applications. Some of those ap-plications are the 499 MHz rf separator system for the Jef-ferson Lab 12...

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Detalles Bibliográficos
Autores principales: De Silva, S U, Delayen, Jean Roger, Castilla, A
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/2112139
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author De Silva, S U
Delayen, Jean Roger
Castilla, A
author_facet De Silva, S U
Delayen, Jean Roger
Castilla, A
author_sort De Silva, S U
collection CERN
description Over the years the superconducting parallel-bar designhas evolved into an rf-dipole cavity with improved proper-ties. The new rf-dipole design is considered for a numberof deflecting and crabbing applications. Some of those ap-plications are the 499 MHz rf separator system for the Jef-ferson Lab 12 GeV upgrade, the 400 MHz crabbing cav-ity system for the proposed LHC high luminosity upgrade,and the 750 MHz crabbing cavity for the medium energyelectron-ion collider in Jefferson Lab. In this paper wepresent the optimized rf design in terms of rf performanceincluding rf properties, higher order modes (HOM) prop-erties, multipacting, and multipole expansion for the abovementioned applications.
id cern-2112139
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
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spelling cern-21121392019-09-30T06:29:59Zhttp://cds.cern.ch/record/2112139engDe Silva, S UDelayen, Jean RogerCastilla, ACompact Superconducting RF-Dipole Cavity Designs for Deflecting and Crabbing ApplicationsAccelerators and Storage RingsOver the years the superconducting parallel-bar designhas evolved into an rf-dipole cavity with improved proper-ties. The new rf-dipole design is considered for a numberof deflecting and crabbing applications. Some of those ap-plications are the 499 MHz rf separator system for the Jef-ferson Lab 12 GeV upgrade, the 400 MHz crabbing cav-ity system for the proposed LHC high luminosity upgrade,and the 750 MHz crabbing cavity for the medium energyelectron-ion collider in Jefferson Lab. In this paper wepresent the optimized rf design in terms of rf performanceincluding rf properties, higher order modes (HOM) prop-erties, multipacting, and multipole expansion for the abovementioned applications.CERN-ACC-2015-0167oai:cds.cern.ch:21121392013-05-12
spellingShingle Accelerators and Storage Rings
De Silva, S U
Delayen, Jean Roger
Castilla, A
Compact Superconducting RF-Dipole Cavity Designs for Deflecting and Crabbing Applications
title Compact Superconducting RF-Dipole Cavity Designs for Deflecting and Crabbing Applications
title_full Compact Superconducting RF-Dipole Cavity Designs for Deflecting and Crabbing Applications
title_fullStr Compact Superconducting RF-Dipole Cavity Designs for Deflecting and Crabbing Applications
title_full_unstemmed Compact Superconducting RF-Dipole Cavity Designs for Deflecting and Crabbing Applications
title_short Compact Superconducting RF-Dipole Cavity Designs for Deflecting and Crabbing Applications
title_sort compact superconducting rf-dipole cavity designs for deflecting and crabbing applications
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2112139
work_keys_str_mv AT desilvasu compactsuperconductingrfdipolecavitydesignsfordeflectingandcrabbingapplications
AT delayenjeanroger compactsuperconductingrfdipolecavitydesignsfordeflectingandcrabbingapplications
AT castillaa compactsuperconductingrfdipolecavitydesignsfordeflectingandcrabbingapplications