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Design of a RF Gun for Heavy Beam Loading

For the drive beam generation of the CLIC Test Facility, a RF photo electron gun is required to generate a charge of 1 uC in a train of 48 bunches. The extracted beam energy of 6.5 J leads to a pronounced decrease of the field gradient, causing strong variations in the transverse and longitudinal be...

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Detalles Bibliográficos
Autores principales: Bossart, Rudolf, Dehler, M
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:http://cds.cern.ch/record/323759
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author Bossart, Rudolf
Dehler, M
author_facet Bossart, Rudolf
Dehler, M
author_sort Bossart, Rudolf
collection CERN
description For the drive beam generation of the CLIC Test Facility, a RF photo electron gun is required to generate a charge of 1 uC in a train of 48 bunches. The extracted beam energy of 6.5 J leads to a pronounced decrease of the field gradient, causing strong variations in the transverse and longitudinal beam dynamics. The drop in beam momentum yields a variation in focusing of the following solenoid leading to a blow-up of the transversal emittance. A second effect is the change of the bunch spacing caused by differing bunch velocities. These effects are to a large extent determined by the beam loading in the first cell, which contains the photo cathode. In order to reduce this effect with moderate expense of RF power, a new gun design has been developed using a TM02 resonance in the first cell followed by two standard TM01 cells. Beam simulations show that with this gun, the overall change in the longitudinal bunch spacing can be strongly reduced. Also the chromatic effects in the solenoid due to the drop in longitudinal momentum are partially compensated.
id cern-323759
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1996
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spelling cern-3237592023-08-17T09:44:24Zhttp://cds.cern.ch/record/323759engBossart, RudolfDehler, MDesign of a RF Gun for Heavy Beam LoadingAccelerators and Storage RingsFor the drive beam generation of the CLIC Test Facility, a RF photo electron gun is required to generate a charge of 1 uC in a train of 48 bunches. The extracted beam energy of 6.5 J leads to a pronounced decrease of the field gradient, causing strong variations in the transverse and longitudinal beam dynamics. The drop in beam momentum yields a variation in focusing of the following solenoid leading to a blow-up of the transversal emittance. A second effect is the change of the bunch spacing caused by differing bunch velocities. These effects are to a large extent determined by the beam loading in the first cell, which contains the photo cathode. In order to reduce this effect with moderate expense of RF power, a new gun design has been developed using a TM02 resonance in the first cell followed by two standard TM01 cells. Beam simulations show that with this gun, the overall change in the longitudinal bunch spacing can be strongly reduced. Also the chromatic effects in the solenoid due to the drop in longitudinal momentum are partially compensated.CERN-PS-97-017-RFCLIC-Note-309oai:cds.cern.ch:3237591996-04-01
spellingShingle Accelerators and Storage Rings
Bossart, Rudolf
Dehler, M
Design of a RF Gun for Heavy Beam Loading
title Design of a RF Gun for Heavy Beam Loading
title_full Design of a RF Gun for Heavy Beam Loading
title_fullStr Design of a RF Gun for Heavy Beam Loading
title_full_unstemmed Design of a RF Gun for Heavy Beam Loading
title_short Design of a RF Gun for Heavy Beam Loading
title_sort design of a rf gun for heavy beam loading
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/323759
work_keys_str_mv AT bossartrudolf designofarfgunforheavybeamloading
AT dehlerm designofarfgunforheavybeamloading