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First Full Beam Loading Operation with the CTF3 Linac

The aim of the CLIC (Compact Linear Collider) Study is to investigate the feasibility of a high luminosity, multi-TeV linear e+e- collider. CLIC is based on a two-beam method, in which a high current drive beam is decelerated to produce 30 GHz RF power needed for high-gradient acceleration of the ma...

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Autores principales: Corsini, R, Bernard, M, Bienvenu, G, Braun, H, Carron, G, Ferrari, A, Forstner, O, Garvey, Terence, Geschonke, Günther, Groening, L, Jensen, E, Koontz, R, Lefèvre, T, Miller, R, Rinolfi, Louis, Roux, R, Ruth, Ronald D, Schulte, Daniel, Tecker, F A, Thorndahl, L, Yeremian, A D
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:http://cds.cern.ch/record/791372
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author Corsini, R
Bernard, M
Bienvenu, G
Braun, H
Carron, G
Ferrari, A
Forstner, O
Garvey, Terence
Geschonke, Günther
Groening, L
Jensen, E
Koontz, R
Lefèvre, T
Miller, R
Rinolfi, Louis
Roux, R
Ruth, Ronald D
Schulte, Daniel
Tecker, F A
Thorndahl, L
Yeremian, A D
author_facet Corsini, R
Bernard, M
Bienvenu, G
Braun, H
Carron, G
Ferrari, A
Forstner, O
Garvey, Terence
Geschonke, Günther
Groening, L
Jensen, E
Koontz, R
Lefèvre, T
Miller, R
Rinolfi, Louis
Roux, R
Ruth, Ronald D
Schulte, Daniel
Tecker, F A
Thorndahl, L
Yeremian, A D
author_sort Corsini, R
collection CERN
description The aim of the CLIC (Compact Linear Collider) Study is to investigate the feasibility of a high luminosity, multi-TeV linear e+e- collider. CLIC is based on a two-beam method, in which a high current drive beam is decelerated to produce 30 GHz RF power needed for high-gradient acceleration of the main beam running parallel to it. To demonstrate the outstanding feasibility issues of the scheme a new CLIC Test Facility, CTF3, is being constructed at CERN by an international collaboration. In its final configuration CTF3 will consist of a 150 MeV drive beam linac followed by a 42 m long delay loop and an 84 m combiner ring. The installation will include a 30 GHz high power test stand, a representative CLIC module and a test decelerator. The first part of the linac was installed and commissioned with beam in 2003. The first issue addressed was the generation and acceleration of a high-current drive beam in the "full beam loading" condition where RF power is converted into beam power with an efficiency of more than 90 %. The full beam loading operation was successfully demonstrated with the nominal beam current of 3.5 A. A variety of beam measurements have been performed, showing good agreement with expectations.
id cern-791372
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
record_format invenio
spelling cern-7913722023-07-20T15:03:47Zhttp://cds.cern.ch/record/791372engCorsini, RBernard, MBienvenu, GBraun, HCarron, GFerrari, AForstner, OGarvey, TerenceGeschonke, GüntherGroening, LJensen, EKoontz, RLefèvre, TMiller, RRinolfi, LouisRoux, RRuth, Ronald DSchulte, DanielTecker, F AThorndahl, LYeremian, A DFirst Full Beam Loading Operation with the CTF3 LinacAccelerators and Storage RingsThe aim of the CLIC (Compact Linear Collider) Study is to investigate the feasibility of a high luminosity, multi-TeV linear e+e- collider. CLIC is based on a two-beam method, in which a high current drive beam is decelerated to produce 30 GHz RF power needed for high-gradient acceleration of the main beam running parallel to it. To demonstrate the outstanding feasibility issues of the scheme a new CLIC Test Facility, CTF3, is being constructed at CERN by an international collaboration. In its final configuration CTF3 will consist of a 150 MeV drive beam linac followed by a 42 m long delay loop and an 84 m combiner ring. The installation will include a 30 GHz high power test stand, a representative CLIC module and a test decelerator. The first part of the linac was installed and commissioned with beam in 2003. The first issue addressed was the generation and acceleration of a high-current drive beam in the "full beam loading" condition where RF power is converted into beam power with an efficiency of more than 90 %. The full beam loading operation was successfully demonstrated with the nominal beam current of 3.5 A. A variety of beam measurements have been performed, showing good agreement with expectations.CERN-AB-2004-057SLAC-PUB-10762CTF-3-NOTE-066CLIC-Note-604oai:cds.cern.ch:7913722004-08-17
spellingShingle Accelerators and Storage Rings
Corsini, R
Bernard, M
Bienvenu, G
Braun, H
Carron, G
Ferrari, A
Forstner, O
Garvey, Terence
Geschonke, Günther
Groening, L
Jensen, E
Koontz, R
Lefèvre, T
Miller, R
Rinolfi, Louis
Roux, R
Ruth, Ronald D
Schulte, Daniel
Tecker, F A
Thorndahl, L
Yeremian, A D
First Full Beam Loading Operation with the CTF3 Linac
title First Full Beam Loading Operation with the CTF3 Linac
title_full First Full Beam Loading Operation with the CTF3 Linac
title_fullStr First Full Beam Loading Operation with the CTF3 Linac
title_full_unstemmed First Full Beam Loading Operation with the CTF3 Linac
title_short First Full Beam Loading Operation with the CTF3 Linac
title_sort first full beam loading operation with the ctf3 linac
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/791372
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