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Status of RF power couplers for superconducting cavities at CERN

For LEP2 fixed RF power couplers of the open-ended coaxial line type with d.c. bias are used. The nominal power under matched conditions is about 120 kW at 352 MHz. However, to avoid ponderomotive instabilities, the cavities may not be detuned, i.e. the reactive beam loading cannot be compensated. T...

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Detalles Bibliográficos
Autores principales: Kindermann, H P, Häbel, E, Stirbet, M, Veshcherevich, V G
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:http://cds.cern.ch/record/306757
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author Kindermann, H P
Häbel, E
Stirbet, M
Veshcherevich, V G
author_facet Kindermann, H P
Häbel, E
Stirbet, M
Veshcherevich, V G
author_sort Kindermann, H P
collection CERN
description For LEP2 fixed RF power couplers of the open-ended coaxial line type with d.c. bias are used. The nominal power under matched conditions is about 120 kW at 352 MHz. However, to avoid ponderomotive instabilities, the cavities may not be detuned, i.e. the reactive beam loading cannot be compensated. The coupler is therefore exposed to standing waves with an equivalent power (travelling-wave (TW) producing the same field as the peak fields on the coupler line) of more than 200 kW. The final design of these couplers, their conditioning sequence and their actual performance are presented. For LHC a motor-driven mobile coupler is required to change the external cavity Q by a factor of four between beam injection and storage. During injection the forward power levels at 400 MHz are about 120 kW CW (for approximately 20 minutes) and 180 kW peak (for several milliseconds). Since practically all this RF power is reflected the equivalent travelling power is 480 kW and 720 kW, respectively. These couplers will be also provided with d.c. bias to suppress multipacting and ³deconditioning².
id cern-306757
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1996
record_format invenio
spelling cern-3067572023-05-05T12:57:24Zhttp://cds.cern.ch/record/306757engKindermann, H PHäbel, EStirbet, MVeshcherevich, V GStatus of RF power couplers for superconducting cavities at CERNAccelerators and Storage RingsFor LEP2 fixed RF power couplers of the open-ended coaxial line type with d.c. bias are used. The nominal power under matched conditions is about 120 kW at 352 MHz. However, to avoid ponderomotive instabilities, the cavities may not be detuned, i.e. the reactive beam loading cannot be compensated. The coupler is therefore exposed to standing waves with an equivalent power (travelling-wave (TW) producing the same field as the peak fields on the coupler line) of more than 200 kW. The final design of these couplers, their conditioning sequence and their actual performance are presented. For LHC a motor-driven mobile coupler is required to change the external cavity Q by a factor of four between beam injection and storage. During injection the forward power levels at 400 MHz are about 120 kW CW (for approximately 20 minutes) and 180 kW peak (for several milliseconds). Since practically all this RF power is reflected the equivalent travelling power is 480 kW and 720 kW, respectively. These couplers will be also provided with d.c. bias to suppress multipacting and ³deconditioning².CERN-SL-96-026-RFoai:cds.cern.ch:3067571996-07-02
spellingShingle Accelerators and Storage Rings
Kindermann, H P
Häbel, E
Stirbet, M
Veshcherevich, V G
Status of RF power couplers for superconducting cavities at CERN
title Status of RF power couplers for superconducting cavities at CERN
title_full Status of RF power couplers for superconducting cavities at CERN
title_fullStr Status of RF power couplers for superconducting cavities at CERN
title_full_unstemmed Status of RF power couplers for superconducting cavities at CERN
title_short Status of RF power couplers for superconducting cavities at CERN
title_sort status of rf power couplers for superconducting cavities at cern
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/306757
work_keys_str_mv AT kindermannhp statusofrfpowercouplersforsuperconductingcavitiesatcern
AT habele statusofrfpowercouplersforsuperconductingcavitiesatcern
AT stirbetm statusofrfpowercouplersforsuperconductingcavitiesatcern
AT veshcherevichvg statusofrfpowercouplersforsuperconductingcavitiesatcern