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Two frequency beam-loading compensation in the drive-beam accelerator of the CLIC Test Facility

The CLIC Test Facility (CTF) is a prototype two-beam accelerator, in which a high-current "drive beam" is used to generate the RF power for the main-beam accelerator. The drive-beam accelerator consists of two S-band structures which accelerate a bunch train with a total charge of 500 nC....

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Autores principales: Braun, Hans Heinrich, Valentini, M
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/385371
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author Braun, Hans Heinrich
Valentini, M
author_facet Braun, Hans Heinrich
Valentini, M
author_sort Braun, Hans Heinrich
collection CERN
description The CLIC Test Facility (CTF) is a prototype two-beam accelerator, in which a high-current "drive beam" is used to generate the RF power for the main-beam accelerator. The drive-beam accelerator consists of two S-band structures which accelerate a bunch train with a total charge of 500 nC. The substantial beam loading is compensated by operating the two accelerating structures at 7.81 MHz above and below the bunch repetition frequency, respectively. This introduces a change of RF phase from bunch to bunch, which leads, together with off-crest injection into the accelerator, to an approximate compensation of the beam loading. Due to the sinusoidal time-dependency of the RF field, an energy spread of about 7% remains in the bunch train. A set of idler cavities has been installed to reduce this residual energy spread further. In this paper, the considerations that motivated the choice of the parameters of the beam-loading compensation system, together with the experimental results, are presented.
id cern-385371
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-3853712023-08-17T09:44:37Zhttp://cds.cern.ch/record/385371engBraun, Hans HeinrichValentini, MTwo frequency beam-loading compensation in the drive-beam accelerator of the CLIC Test FacilityAccelerators and Storage RingsThe CLIC Test Facility (CTF) is a prototype two-beam accelerator, in which a high-current "drive beam" is used to generate the RF power for the main-beam accelerator. The drive-beam accelerator consists of two S-band structures which accelerate a bunch train with a total charge of 500 nC. The substantial beam loading is compensated by operating the two accelerating structures at 7.81 MHz above and below the bunch repetition frequency, respectively. This introduces a change of RF phase from bunch to bunch, which leads, together with off-crest injection into the accelerator, to an approximate compensation of the beam loading. Due to the sinusoidal time-dependency of the RF field, an energy spread of about 7% remains in the bunch train. A set of idler cavities has been installed to reduce this residual energy spread further. In this paper, the considerations that motivated the choice of the parameters of the beam-loading compensation system, together with the experimental results, are presented.CERN-PS-99-016-LPCERN-SL-99-016-[SIC!]CLIC-Note-390oai:cds.cern.ch:3853711999-03-26
spellingShingle Accelerators and Storage Rings
Braun, Hans Heinrich
Valentini, M
Two frequency beam-loading compensation in the drive-beam accelerator of the CLIC Test Facility
title Two frequency beam-loading compensation in the drive-beam accelerator of the CLIC Test Facility
title_full Two frequency beam-loading compensation in the drive-beam accelerator of the CLIC Test Facility
title_fullStr Two frequency beam-loading compensation in the drive-beam accelerator of the CLIC Test Facility
title_full_unstemmed Two frequency beam-loading compensation in the drive-beam accelerator of the CLIC Test Facility
title_short Two frequency beam-loading compensation in the drive-beam accelerator of the CLIC Test Facility
title_sort two frequency beam-loading compensation in the drive-beam accelerator of the clic test facility
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/385371
work_keys_str_mv AT braunhansheinrich twofrequencybeamloadingcompensationinthedrivebeamacceleratoroftheclictestfacility
AT valentinim twofrequencybeamloadingcompensationinthedrivebeamacceleratoroftheclictestfacility