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Computation of the Coupling Resonance Driving term f1001 and the coupling coefficient C from turn-by-turn single-BPM data.

In this note we show how to compute the Resonance Driving Term (RDT) f1001, the local resonance term chi 1010 and the coupling coefficient C from the spectrum of turn-by-turn single-BPM data. The harmonic analysis of real coordinate x(y) is model independent, conversely to the the analysis of the co...

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Autores principales: Franchi, A, Tomas Garcia, R, Vanbavinkhove, G
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1264111
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author Franchi, A
Tomas Garcia, R
Vanbavinkhove, G
author_facet Franchi, A
Tomas Garcia, R
Vanbavinkhove, G
author_sort Franchi, A
collection CERN
description In this note we show how to compute the Resonance Driving Term (RDT) f1001, the local resonance term chi 1010 and the coupling coefficient C from the spectrum of turn-by-turn single-BPM data. The harmonic analysis of real coordinate x(y) is model independent, conversely to the the analysis of the complex Courant-Snyder coordinate hx,- = x-ipx. From the computation of f1001 along the ring is closely related to the global coupling coefficient C, but it is affected by an intrinsic error, discussed in this note.
id cern-1264111
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
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spelling cern-12641112019-09-30T06:29:59Zhttp://cds.cern.ch/record/1264111engFranchi, ATomas Garcia, RVanbavinkhove, GComputation of the Coupling Resonance Driving term f1001 and the coupling coefficient C from turn-by-turn single-BPM data.Accelerators and Storage RingsIn this note we show how to compute the Resonance Driving Term (RDT) f1001, the local resonance term chi 1010 and the coupling coefficient C from the spectrum of turn-by-turn single-BPM data. The harmonic analysis of real coordinate x(y) is model independent, conversely to the the analysis of the complex Courant-Snyder coordinate hx,- = x-ipx. From the computation of f1001 along the ring is closely related to the global coupling coefficient C, but it is affected by an intrinsic error, discussed in this note.CERN-BE-Note-2010-016oai:cds.cern.ch:12641112010-05-07
spellingShingle Accelerators and Storage Rings
Franchi, A
Tomas Garcia, R
Vanbavinkhove, G
Computation of the Coupling Resonance Driving term f1001 and the coupling coefficient C from turn-by-turn single-BPM data.
title Computation of the Coupling Resonance Driving term f1001 and the coupling coefficient C from turn-by-turn single-BPM data.
title_full Computation of the Coupling Resonance Driving term f1001 and the coupling coefficient C from turn-by-turn single-BPM data.
title_fullStr Computation of the Coupling Resonance Driving term f1001 and the coupling coefficient C from turn-by-turn single-BPM data.
title_full_unstemmed Computation of the Coupling Resonance Driving term f1001 and the coupling coefficient C from turn-by-turn single-BPM data.
title_short Computation of the Coupling Resonance Driving term f1001 and the coupling coefficient C from turn-by-turn single-BPM data.
title_sort computation of the coupling resonance driving term f1001 and the coupling coefficient c from turn-by-turn single-bpm data.
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1264111
work_keys_str_mv AT franchia computationofthecouplingresonancedrivingtermf1001andthecouplingcoefficientcfromturnbyturnsinglebpmdata
AT tomasgarciar computationofthecouplingresonancedrivingtermf1001andthecouplingcoefficientcfromturnbyturnsinglebpmdata
AT vanbavinkhoveg computationofthecouplingresonancedrivingtermf1001andthecouplingcoefficientcfromturnbyturnsinglebpmdata