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Development of Room Temperature and Superconducting CH-Structures

H-mode cavities (IH-DTL, IH-RFQ, 4-Vane-RFQ) have been developed and operated successfully during the last decades for a large variety of applications in ion acceleration. At the IAP Frankfurt a new type of H-mode cavity, the CH-structure is under development. This multi cell drift tube cavity is op...

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Autor principal: Podlech, H
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:http://cds.cern.ch/record/925430
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author Podlech, H
author_facet Podlech, H
author_sort Podlech, H
collection CERN
description H-mode cavities (IH-DTL, IH-RFQ, 4-Vane-RFQ) have been developed and operated successfully during the last decades for a large variety of applications in ion acceleration. At the IAP Frankfurt a new type of H-mode cavity, the CH-structure is under development. This multi cell drift tube cavity is operated in the H21 mode. Due to its mechanical stability, room temperature as well as superconducting cavities can be realized. The CH-structure is an excellent candidate for high power ion accelerators in the energy range from 5 to 100 MeV. The design status of the GSI 70 MeV, 70 mA proton injector DTL consisting of room temperature CH-structures is reported. Superconducting CH-structures can be used especially for cw operated linacs as designed for XADS, IFMIF or in nuclear physics projects. By using the KONUS beam dynamics and performing the particle simulations with the LORASR code it is possible to realize multi cell cavities without internal focusing lenses. A superconducting 352 MHz CH-structure (β=0.1) with 19 gaps has been built. We present the results of the first tests with this new cavity. The status of a PC version of the LORASR code will be reported.
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language eng
publishDate 2004
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spelling cern-9254302019-09-30T06:29:59Zhttp://cds.cern.ch/record/925430engPodlech, HDevelopment of Room Temperature and Superconducting CH-StructuresAccelerators and Storage RingsH-mode cavities (IH-DTL, IH-RFQ, 4-Vane-RFQ) have been developed and operated successfully during the last decades for a large variety of applications in ion acceleration. At the IAP Frankfurt a new type of H-mode cavity, the CH-structure is under development. This multi cell drift tube cavity is operated in the H21 mode. Due to its mechanical stability, room temperature as well as superconducting cavities can be realized. The CH-structure is an excellent candidate for high power ion accelerators in the energy range from 5 to 100 MeV. The design status of the GSI 70 MeV, 70 mA proton injector DTL consisting of room temperature CH-structures is reported. Superconducting CH-structures can be used especially for cw operated linacs as designed for XADS, IFMIF or in nuclear physics projects. By using the KONUS beam dynamics and performing the particle simulations with the LORASR code it is possible to realize multi cell cavities without internal focusing lenses. A superconducting 352 MHz CH-structure (β=0.1) with 19 gaps has been built. We present the results of the first tests with this new cavity. The status of a PC version of the LORASR code will be reported.CARE-CONF-04-011-HIPPICARE-CONF-2004-011-HIPPIoai:cds.cern.ch:9254302004
spellingShingle Accelerators and Storage Rings
Podlech, H
Development of Room Temperature and Superconducting CH-Structures
title Development of Room Temperature and Superconducting CH-Structures
title_full Development of Room Temperature and Superconducting CH-Structures
title_fullStr Development of Room Temperature and Superconducting CH-Structures
title_full_unstemmed Development of Room Temperature and Superconducting CH-Structures
title_short Development of Room Temperature and Superconducting CH-Structures
title_sort development of room temperature and superconducting ch-structures
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/925430
work_keys_str_mv AT podlechh developmentofroomtemperatureandsuperconductingchstructures