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Efficient long-pulse fully-loaded CTF3 linac operation

An efficient RF to beam energy transfer in the accelerating structures of the drive beam is one of the key points of the Compact Linear Collider (CLIC) RF power source. For this, the structures are fully beam-loaded, i.e. the accelerating gradient is nearly zero at the downstream end of each structu...

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Autores principales: Braun, Hans Heinrich, Corsini, Roberto, Döbert, Steffen, Jensen, Erk, Tecker, Frank A, Urschütz, Peter
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/999488
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author Braun, Hans Heinrich
Corsini, Roberto
Döbert, Steffen
Jensen, Erk
Tecker, Frank A
Urschütz, Peter
author_facet Braun, Hans Heinrich
Corsini, Roberto
Döbert, Steffen
Jensen, Erk
Tecker, Frank A
Urschütz, Peter
author_sort Braun, Hans Heinrich
collection CERN
description An efficient RF to beam energy transfer in the accelerating structures of the drive beam is one of the key points of the Compact Linear Collider (CLIC) RF power source. For this, the structures are fully beam-loaded, i.e. the accelerating gradient is nearly zero at the downstream end of each structure. In this way, about 96 % of the RF energy can be transferred to the beam. To demonstrate this mode of operation, 1.5 ..s long beam pulses are accelerated in six fully loaded structures in the CLIC Test Facility (CTF3) Linac. The final beam energy is compared to the input RF power of the structures, proving the efficient energy transfer.
id cern-999488
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
record_format invenio
spelling cern-9994882023-07-20T15:00:54Zhttp://cds.cern.ch/record/999488engBraun, Hans HeinrichCorsini, RobertoDöbert, SteffenJensen, ErkTecker, Frank AUrschütz, PeterEfficient long-pulse fully-loaded CTF3 linac operationAccelerators and Storage RingsAn efficient RF to beam energy transfer in the accelerating structures of the drive beam is one of the key points of the Compact Linear Collider (CLIC) RF power source. For this, the structures are fully beam-loaded, i.e. the accelerating gradient is nearly zero at the downstream end of each structure. In this way, about 96 % of the RF energy can be transferred to the beam. To demonstrate this mode of operation, 1.5 ..s long beam pulses are accelerated in six fully loaded structures in the CLIC Test Facility (CTF3) Linac. The final beam energy is compared to the input RF power of the structures, proving the efficient energy transfer.CERN-OPEN-2006-070CLIC-Note-697oai:cds.cern.ch:9994882006-11-20
spellingShingle Accelerators and Storage Rings
Braun, Hans Heinrich
Corsini, Roberto
Döbert, Steffen
Jensen, Erk
Tecker, Frank A
Urschütz, Peter
Efficient long-pulse fully-loaded CTF3 linac operation
title Efficient long-pulse fully-loaded CTF3 linac operation
title_full Efficient long-pulse fully-loaded CTF3 linac operation
title_fullStr Efficient long-pulse fully-loaded CTF3 linac operation
title_full_unstemmed Efficient long-pulse fully-loaded CTF3 linac operation
title_short Efficient long-pulse fully-loaded CTF3 linac operation
title_sort efficient long-pulse fully-loaded ctf3 linac operation
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/999488
work_keys_str_mv AT braunhansheinrich efficientlongpulsefullyloadedctf3linacoperation
AT corsiniroberto efficientlongpulsefullyloadedctf3linacoperation
AT dobertsteffen efficientlongpulsefullyloadedctf3linacoperation
AT jensenerk efficientlongpulsefullyloadedctf3linacoperation
AT teckerfranka efficientlongpulsefullyloadedctf3linacoperation
AT urschutzpeter efficientlongpulsefullyloadedctf3linacoperation