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On-line Monitoring of the Linear Coupling Resonances for the LHC

Before correction, the difference coupling coefficient in LHC is expected to reach 0.2 at injection and vary by 30 to 40% from injection to top energy. These high values arise mostly from the field imperfections in the super-conducting dipoles, the feed-down from the parasitic sextupoles and the str...

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Autores principales: Catalan-Lasheras, N, Fartoukh, Stéphane David, Koutchouk, Jean-Pierre
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/619880
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author Catalan-Lasheras, N
Fartoukh, Stéphane David
Koutchouk, Jean-Pierre
author_facet Catalan-Lasheras, N
Fartoukh, Stéphane David
Koutchouk, Jean-Pierre
author_sort Catalan-Lasheras, N
collection CERN
description Before correction, the difference coupling coefficient in LHC is expected to reach 0.2 at injection and vary by 30 to 40% from injection to top energy. These high values arise mostly from the field imperfections in the super-conducting dipoles, the feed-down from the parasitic sextupoles and the strongly-focused low-beta insertions. A measurement method which lends itself to continuous monitoring and active feedback is therefore investigated. Our approach is based on the beam response to an excitation in the other plane (coupling BTF). The analytical approach [1] shows that a proper measurement protocol allows extracting the global and local complex coefficients of both the difference and sum coupling resonances. In order to prevent any emittance blow-up, the beam is excited at small amplitude outside its eigen-frequencies with smooth transitions (AC-dipole principle). A first experiment in the SPS [2] confirms the approach and its robustness.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
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spelling cern-6198802023-05-31T13:23:23Zhttp://cds.cern.ch/record/619880engCatalan-Lasheras, NFartoukh, Stéphane DavidKoutchouk, Jean-PierreOn-line Monitoring of the Linear Coupling Resonances for the LHCAccelerators and Storage RingsBefore correction, the difference coupling coefficient in LHC is expected to reach 0.2 at injection and vary by 30 to 40% from injection to top energy. These high values arise mostly from the field imperfections in the super-conducting dipoles, the feed-down from the parasitic sextupoles and the strongly-focused low-beta insertions. A measurement method which lends itself to continuous monitoring and active feedback is therefore investigated. Our approach is based on the beam response to an excitation in the other plane (coupling BTF). The analytical approach [1] shows that a proper measurement protocol allows extracting the global and local complex coefficients of both the difference and sum coupling resonances. In order to prevent any emittance blow-up, the beam is excited at small amplitude outside its eigen-frequencies with smooth transitions (AC-dipole principle). A first experiment in the SPS [2] confirms the approach and its robustness.LHC-Project-Report-644CERN-LHC-Project-Report-644oai:cds.cern.ch:6198802003-06-05
spellingShingle Accelerators and Storage Rings
Catalan-Lasheras, N
Fartoukh, Stéphane David
Koutchouk, Jean-Pierre
On-line Monitoring of the Linear Coupling Resonances for the LHC
title On-line Monitoring of the Linear Coupling Resonances for the LHC
title_full On-line Monitoring of the Linear Coupling Resonances for the LHC
title_fullStr On-line Monitoring of the Linear Coupling Resonances for the LHC
title_full_unstemmed On-line Monitoring of the Linear Coupling Resonances for the LHC
title_short On-line Monitoring of the Linear Coupling Resonances for the LHC
title_sort on-line monitoring of the linear coupling resonances for the lhc
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/619880
work_keys_str_mv AT catalanlasherasn onlinemonitoringofthelinearcouplingresonancesforthelhc
AT fartoukhstephanedavid onlinemonitoringofthelinearcouplingresonancesforthelhc
AT koutchoukjeanpierre onlinemonitoringofthelinearcouplingresonancesforthelhc