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Measurement of Resonance Driving Terms from Turn-by-Turn Data

It has been shown that the Fourier analysis of recorded turn-by-turn tracking data can be used to derive resonance terms of an accelerator. Besides the resonance driving terms, the non-linear one-turn map can be obtained with all non-linearities arising from magnetic imperfections and correction ele...

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Detalles Bibliográficos
Autores principales: Bartolini, R, Leunissen, L H A, Papaphilippou, Y, Schmidt, F, Verdier, A
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/387272
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author Bartolini, R
Leunissen, L H A
Papaphilippou, Y
Schmidt, F
Verdier, A
author_facet Bartolini, R
Leunissen, L H A
Papaphilippou, Y
Schmidt, F
Verdier, A
author_sort Bartolini, R
collection CERN
description It has been shown that the Fourier analysis of recorded turn-by-turn tracking data can be used to derive resonance terms of an accelerator. Besides the resonance driving terms, the non-linear one-turn map can be obtained with all non-linearities arising from magnetic imperfections and correction elements. This could be interesting for the LHC which will be a machine that is dominated by strong non-linear fields. The methods works very well for tracking data and is expected to work equally well for turn-by-turn beam data. The precision to which these terms can be determined relies on the frequency analysis tool. To demonstrate the feasibility of the method, measurements of real accelerators are presented in which the beam is kicked once and the beam oscillations are recorded over several thousand turns. Besides the tune, the strengths of resonance driving terms have been measured and the results are compared with numerical calculations
id cern-387272
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-3872722023-05-05T13:07:38Zhttp://cds.cern.ch/record/387272engBartolini, RLeunissen, L H APapaphilippou, YSchmidt, FVerdier, AMeasurement of Resonance Driving Terms from Turn-by-Turn DataAccelerators and Storage RingsIt has been shown that the Fourier analysis of recorded turn-by-turn tracking data can be used to derive resonance terms of an accelerator. Besides the resonance driving terms, the non-linear one-turn map can be obtained with all non-linearities arising from magnetic imperfections and correction elements. This could be interesting for the LHC which will be a machine that is dominated by strong non-linear fields. The methods works very well for tracking data and is expected to work equally well for turn-by-turn beam data. The precision to which these terms can be determined relies on the frequency analysis tool. To demonstrate the feasibility of the method, measurements of real accelerators are presented in which the beam is kicked once and the beam oscillations are recorded over several thousand turns. Besides the tune, the strengths of resonance driving terms have been measured and the results are compared with numerical calculationsCERN-SL-99-032-APoai:cds.cern.ch:3872721999
spellingShingle Accelerators and Storage Rings
Bartolini, R
Leunissen, L H A
Papaphilippou, Y
Schmidt, F
Verdier, A
Measurement of Resonance Driving Terms from Turn-by-Turn Data
title Measurement of Resonance Driving Terms from Turn-by-Turn Data
title_full Measurement of Resonance Driving Terms from Turn-by-Turn Data
title_fullStr Measurement of Resonance Driving Terms from Turn-by-Turn Data
title_full_unstemmed Measurement of Resonance Driving Terms from Turn-by-Turn Data
title_short Measurement of Resonance Driving Terms from Turn-by-Turn Data
title_sort measurement of resonance driving terms from turn-by-turn data
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/387272
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AT leunissenlha measurementofresonancedrivingtermsfromturnbyturndata
AT papaphilippouy measurementofresonancedrivingtermsfromturnbyturndata
AT schmidtf measurementofresonancedrivingtermsfromturnbyturndata
AT verdiera measurementofresonancedrivingtermsfromturnbyturndata