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CLIC, a 0.5 to 5 TeV e$^{\pm}$ Compact Linear Collider

The CLIC study of a high energy (0.5 - 5 TeV), high luminosity (10^34 - 10^35 cm^-2 sec^-1) e± linear collider is presented. Beam acceleration using high frequency (30 GHz) normal-conducting structure s operating at high accelerating fields (100 to 200 MV/m) significantly reduces the length and, in...

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Detalles Bibliográficos
Autores principales: Delahaye, J P, Bossart, Rudolf, Braun, Hans Heinrich, Carron, G, Chautard, F, Coosemans, Williame, Corsini, R, D'Amico, T E, Dehler, M, Godot, J C, Guignard, Gilbert, Hagel, J, Hutchins, S, Johnson, C D, Jensen, E, Kamber, I, Millich, Antonio, Pearce, P, Potier, J P, Riche, A J, Rinolfi, Louis, Schulte, Daniel, Suberlucq, Guy, Thorndahl, L, Valentini, M, Warner, D J, Wilson, Ian H, Wuensch, Walter, Napoly, O, Raubenheimer, T O, Ruth, Ronald D
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:http://cds.cern.ch/record/359917
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author Delahaye, J P
Bossart, Rudolf
Braun, Hans Heinrich
Carron, G
Chautard, F
Coosemans, Williame
Corsini, R
D'Amico, T E
Dehler, M
Godot, J C
Guignard, Gilbert
Hagel, J
Hutchins, S
Johnson, C D
Jensen, E
Kamber, I
Millich, Antonio
Pearce, P
Potier, J P
Riche, A J
Rinolfi, Louis
Schulte, Daniel
Suberlucq, Guy
Thorndahl, L
Valentini, M
Warner, D J
Wilson, Ian H
Wuensch, Walter
Napoly, O
Raubenheimer, T O
Ruth, Ronald D
author_facet Delahaye, J P
Bossart, Rudolf
Braun, Hans Heinrich
Carron, G
Chautard, F
Coosemans, Williame
Corsini, R
D'Amico, T E
Dehler, M
Godot, J C
Guignard, Gilbert
Hagel, J
Hutchins, S
Johnson, C D
Jensen, E
Kamber, I
Millich, Antonio
Pearce, P
Potier, J P
Riche, A J
Rinolfi, Louis
Schulte, Daniel
Suberlucq, Guy
Thorndahl, L
Valentini, M
Warner, D J
Wilson, Ian H
Wuensch, Walter
Napoly, O
Raubenheimer, T O
Ruth, Ronald D
author_sort Delahaye, J P
collection CERN
description The CLIC study of a high energy (0.5 - 5 TeV), high luminosity (10^34 - 10^35 cm^-2 sec^-1) e± linear collider is presented. Beam acceleration using high frequency (30 GHz) normal-conducting structure s operating at high accelerating fields (100 to 200 MV/m) significantly reduces the length and, in consequence the cost of the linac. Based on new beam and linac parameters derived from a recently dev eloped set of general scaling laws for linear colliders, the beam stability is shown to be similar to lower frequency designs in spite of the strong wake-field dependency on frequency. A new cost effe ctive and very efficient drive beam generation scheme for RF power production by the so-called "Two Beam Acceleration (TBA)" method is described. It uses a conventional thermionic gun and a fully-load ed normal-conducting linac operating at low frequency (937 MHz) to generate and accelerate the drive beam bunches and RF multiplication by funneling in compressor rings to produce the desired bunch st ructure. Recent 30 GHz hardware developments and results from the CLIC Test Facility (CTF) assessing the feasibility of the scheme are described.
id cern-359917
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
record_format invenio
spelling cern-3599172023-07-20T15:06:03Zhttp://cds.cern.ch/record/359917engDelahaye, J PBossart, RudolfBraun, Hans HeinrichCarron, GChautard, FCoosemans, WilliameCorsini, RD'Amico, T EDehler, MGodot, J CGuignard, GilbertHagel, JHutchins, SJohnson, C DJensen, EKamber, IMillich, AntonioPearce, PPotier, J PRiche, A JRinolfi, LouisSchulte, DanielSuberlucq, GuyThorndahl, LValentini, MWarner, D JWilson, Ian HWuensch, WalterNapoly, ORaubenheimer, T ORuth, Ronald DCLIC, a 0.5 to 5 TeV e$^{\pm}$ Compact Linear ColliderAccelerators and Storage RingsThe CLIC study of a high energy (0.5 - 5 TeV), high luminosity (10^34 - 10^35 cm^-2 sec^-1) e± linear collider is presented. Beam acceleration using high frequency (30 GHz) normal-conducting structure s operating at high accelerating fields (100 to 200 MV/m) significantly reduces the length and, in consequence the cost of the linac. Based on new beam and linac parameters derived from a recently dev eloped set of general scaling laws for linear colliders, the beam stability is shown to be similar to lower frequency designs in spite of the strong wake-field dependency on frequency. A new cost effe ctive and very efficient drive beam generation scheme for RF power production by the so-called "Two Beam Acceleration (TBA)" method is described. It uses a conventional thermionic gun and a fully-load ed normal-conducting linac operating at low frequency (937 MHz) to generate and accelerate the drive beam bunches and RF multiplication by funneling in compressor rings to produce the desired bunch st ructure. Recent 30 GHz hardware developments and results from the CLIC Test Facility (CTF) assessing the feasibility of the scheme are described.CERN-PS-98-009-LPCLIC-Note-360oai:cds.cern.ch:3599171998-06-18
spellingShingle Accelerators and Storage Rings
Delahaye, J P
Bossart, Rudolf
Braun, Hans Heinrich
Carron, G
Chautard, F
Coosemans, Williame
Corsini, R
D'Amico, T E
Dehler, M
Godot, J C
Guignard, Gilbert
Hagel, J
Hutchins, S
Johnson, C D
Jensen, E
Kamber, I
Millich, Antonio
Pearce, P
Potier, J P
Riche, A J
Rinolfi, Louis
Schulte, Daniel
Suberlucq, Guy
Thorndahl, L
Valentini, M
Warner, D J
Wilson, Ian H
Wuensch, Walter
Napoly, O
Raubenheimer, T O
Ruth, Ronald D
CLIC, a 0.5 to 5 TeV e$^{\pm}$ Compact Linear Collider
title CLIC, a 0.5 to 5 TeV e$^{\pm}$ Compact Linear Collider
title_full CLIC, a 0.5 to 5 TeV e$^{\pm}$ Compact Linear Collider
title_fullStr CLIC, a 0.5 to 5 TeV e$^{\pm}$ Compact Linear Collider
title_full_unstemmed CLIC, a 0.5 to 5 TeV e$^{\pm}$ Compact Linear Collider
title_short CLIC, a 0.5 to 5 TeV e$^{\pm}$ Compact Linear Collider
title_sort clic, a 0.5 to 5 tev e$^{\pm}$ compact linear collider
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/359917
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