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Conceptual Design of the CLIC Damping Rings

The CLIC Damping rings are designed to produce unprecedentedly low-emittances of 500 nm and 5 nm normalized at 2.86 GeV, with high bunch charge, necessary for the performance of the collider. The large beam brightness triggers a number of beam dynamics and technical challenges. Ring parameters such...

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Autores principales: Papaphilippou, Y, Antoniou, F, Barnes, M, Calatroni, S, Chiggiato, P, Corsini, R, Grudiev, A, Koukovini, E, Lefevre, T, Martini, M, Modena, M, Mounet, N, Perin, A, Renier, Y, Russenschuck, S, Rumolo, G, Schoerling, D, Schulte, D, Schmickler, H, Taborelli, M, Vandoni, G, Zimmermann, F, Zisopoulos, P, Boland, M, Palmer, M, Bragin, A, Levichev, E, Syniatkin, S, Zolotarev, K, Vobly, P, Korostelev, M, Vivoli, A, Belver-Aguilar, C, Faus-Golfe, A, Rinolfi, L, Bernhard, A, Pivi, M, Smith, S, Rassool, R, Wootton, K
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1464093
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author Papaphilippou, Y
Antoniou, F
Barnes, M
Calatroni, S
Chiggiato, P
Corsini, R
Grudiev, A
Koukovini, E
Lefevre, T
Martini, M
Modena, M
Mounet, N
Perin, A
Renier, Y
Russenschuck, S
Rumolo, G
Schoerling, D
Schulte, D
Schmickler, H
Taborelli, M
Vandoni, G
Zimmermann, F
Zisopoulos, P
Boland, M
Palmer, M
Bragin, A
Levichev, E
Syniatkin, S
Zolotarev, K
Vobly, P
Korostelev, M
Vivoli, A
Belver-Aguilar, C
Faus-Golfe, A
Rinolfi, L
Bernhard, A
Pivi, M
Smith, S
Rassool, R
Wootton, K
author_facet Papaphilippou, Y
Antoniou, F
Barnes, M
Calatroni, S
Chiggiato, P
Corsini, R
Grudiev, A
Koukovini, E
Lefevre, T
Martini, M
Modena, M
Mounet, N
Perin, A
Renier, Y
Russenschuck, S
Rumolo, G
Schoerling, D
Schulte, D
Schmickler, H
Taborelli, M
Vandoni, G
Zimmermann, F
Zisopoulos, P
Boland, M
Palmer, M
Bragin, A
Levichev, E
Syniatkin, S
Zolotarev, K
Vobly, P
Korostelev, M
Vivoli, A
Belver-Aguilar, C
Faus-Golfe, A
Rinolfi, L
Bernhard, A
Pivi, M
Smith, S
Rassool, R
Wootton, K
author_sort Papaphilippou, Y
collection CERN
description The CLIC Damping rings are designed to produce unprecedentedly low-emittances of 500 nm and 5 nm normalized at 2.86 GeV, with high bunch charge, necessary for the performance of the collider. The large beam brightness triggers a number of beam dynamics and technical challenges. Ring parameters such as energy, circumference, lattice, momentum compaction, bending and superconducting wiggler fields are carefully chosen in order to provide the target emittances under the influence of intrabeam scattering but also reduce the impact of collective effects such as space-charge and coherent synchrotron radiation. Mitigation techniques for two stream instabilities have been identified and tested. The low vertical emittance is achieved by modern orbit and coupling correction techniques. Design considerations and plans for technical systems, such as wigglers, transfer systems, vacuum, RF cavities, instrumentation and feedback are finally reviewed.
id cern-1464093
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
record_format invenio
spelling cern-14640932023-07-20T15:06:56Zhttp://cds.cern.ch/record/1464093engPapaphilippou, YAntoniou, FBarnes, MCalatroni, SChiggiato, PCorsini, RGrudiev, AKoukovini, ELefevre, TMartini, MModena, MMounet, NPerin, ARenier, YRussenschuck, SRumolo, GSchoerling, DSchulte, DSchmickler, HTaborelli, MVandoni, GZimmermann, FZisopoulos, PBoland, MPalmer, MBragin, ALevichev, ESyniatkin, SZolotarev, KVobly, PKorostelev, MVivoli, ABelver-Aguilar, CFaus-Golfe, ARinolfi, LBernhard, APivi, MSmith, SRassool, RWootton, KConceptual Design of the CLIC Damping RingsAccelerators and Storage RingsThe CLIC Damping rings are designed to produce unprecedentedly low-emittances of 500 nm and 5 nm normalized at 2.86 GeV, with high bunch charge, necessary for the performance of the collider. The large beam brightness triggers a number of beam dynamics and technical challenges. Ring parameters such as energy, circumference, lattice, momentum compaction, bending and superconducting wiggler fields are carefully chosen in order to provide the target emittances under the influence of intrabeam scattering but also reduce the impact of collective effects such as space-charge and coherent synchrotron radiation. Mitigation techniques for two stream instabilities have been identified and tested. The low vertical emittance is achieved by modern orbit and coupling correction techniques. Design considerations and plans for technical systems, such as wigglers, transfer systems, vacuum, RF cavities, instrumentation and feedback are finally reviewed.CERN-ATS-2012-176CLIC-Note-965oai:cds.cern.ch:14640932012-05-20
spellingShingle Accelerators and Storage Rings
Papaphilippou, Y
Antoniou, F
Barnes, M
Calatroni, S
Chiggiato, P
Corsini, R
Grudiev, A
Koukovini, E
Lefevre, T
Martini, M
Modena, M
Mounet, N
Perin, A
Renier, Y
Russenschuck, S
Rumolo, G
Schoerling, D
Schulte, D
Schmickler, H
Taborelli, M
Vandoni, G
Zimmermann, F
Zisopoulos, P
Boland, M
Palmer, M
Bragin, A
Levichev, E
Syniatkin, S
Zolotarev, K
Vobly, P
Korostelev, M
Vivoli, A
Belver-Aguilar, C
Faus-Golfe, A
Rinolfi, L
Bernhard, A
Pivi, M
Smith, S
Rassool, R
Wootton, K
Conceptual Design of the CLIC Damping Rings
title Conceptual Design of the CLIC Damping Rings
title_full Conceptual Design of the CLIC Damping Rings
title_fullStr Conceptual Design of the CLIC Damping Rings
title_full_unstemmed Conceptual Design of the CLIC Damping Rings
title_short Conceptual Design of the CLIC Damping Rings
title_sort conceptual design of the clic damping rings
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1464093
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