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A Theory of the Beam Transfer Function (BTF) with Chromaticity Induced Head-Tail Phase Shift

The feasibility of chromaticity determination by measuring head-tail phase shifts has been demonstrated both in the CERN-SPS, at HERA (DESY) and at RHIC (BNL). This method, however, requires to apply sizable transverse kick to the beam which might turn to be detrimental to the LHC performance in vie...

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Autor principal: Fartoukh, S
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:http://cds.cern.ch/record/1019184
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author Fartoukh, S
author_facet Fartoukh, S
author_sort Fartoukh, S
collection CERN
description The feasibility of chromaticity determination by measuring head-tail phase shifts has been demonstrated both in the CERN-SPS, at HERA (DESY) and at RHIC (BNL). This method, however, requires to apply sizable transverse kick to the beam which might turn to be detrimental to the LHC performance in view of the tight emittance growth budget allowed for this machine. The aim of this paper is to extend the theory to the case of a coherent beam excitation of small amplitude, in particular at a frequency equal to the beam betatron tune (Phase Locked Loop mode), with, as a result, the possibility of envisaging a chromaticity feed-back system based on this technique for the LHC.
id cern-1019184
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
record_format invenio
spelling cern-10191842023-05-31T13:23:18Zhttp://cds.cern.ch/record/1019184engFartoukh, SA Theory of the Beam Transfer Function (BTF) with Chromaticity Induced Head-Tail Phase ShiftAccelerators and Storage RingsThe feasibility of chromaticity determination by measuring head-tail phase shifts has been demonstrated both in the CERN-SPS, at HERA (DESY) and at RHIC (BNL). This method, however, requires to apply sizable transverse kick to the beam which might turn to be detrimental to the LHC performance in view of the tight emittance growth budget allowed for this machine. The aim of this paper is to extend the theory to the case of a coherent beam excitation of small amplitude, in particular at a frequency equal to the beam betatron tune (Phase Locked Loop mode), with, as a result, the possibility of envisaging a chromaticity feed-back system based on this technique for the LHC.LHC-PROJECT-Report-986CERN-LHC-PROJECT-Report-986oai:cds.cern.ch:10191842007-01-20
spellingShingle Accelerators and Storage Rings
Fartoukh, S
A Theory of the Beam Transfer Function (BTF) with Chromaticity Induced Head-Tail Phase Shift
title A Theory of the Beam Transfer Function (BTF) with Chromaticity Induced Head-Tail Phase Shift
title_full A Theory of the Beam Transfer Function (BTF) with Chromaticity Induced Head-Tail Phase Shift
title_fullStr A Theory of the Beam Transfer Function (BTF) with Chromaticity Induced Head-Tail Phase Shift
title_full_unstemmed A Theory of the Beam Transfer Function (BTF) with Chromaticity Induced Head-Tail Phase Shift
title_short A Theory of the Beam Transfer Function (BTF) with Chromaticity Induced Head-Tail Phase Shift
title_sort theory of the beam transfer function (btf) with chromaticity induced head-tail phase shift
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1019184
work_keys_str_mv AT fartoukhs atheoryofthebeamtransferfunctionbtfwithchromaticityinducedheadtailphaseshift
AT fartoukhs theoryofthebeamtransferfunctionbtfwithchromaticityinducedheadtailphaseshift