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Comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies

The prediction of the transverse wall beam impedance at the first unstable betatron line (8 kHz) of the CERN Large Hadron Collider (LHC) is of paramount importance for understanding and controlling the related coupled-bunch instabilities. Until now only novel analytical formulas were available at th...

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Autores principales: Roncarolo, F, Caspers, Friedhelm, Kroyer, T, Metral, E, Mounet, N, Salvant, B, Zotter, B
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:http://cds.cern.ch/record/1247961
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author Roncarolo, F
Caspers, Friedhelm
Kroyer, T
Metral, E
Mounet, N
Salvant, B
Zotter, B
author_facet Roncarolo, F
Caspers, Friedhelm
Kroyer, T
Metral, E
Mounet, N
Salvant, B
Zotter, B
author_sort Roncarolo, F
collection CERN
description The prediction of the transverse wall beam impedance at the first unstable betatron line (8 kHz) of the CERN Large Hadron Collider (LHC) is of paramount importance for understanding and controlling the related coupled-bunch instabilities. Until now only novel analytical formulas were available at this frequency. Recently, laboratory measurements and numerical simulations were performed to cross-check the analytical predictions. The experimental results based on the measurement of the variation of a probe coil inductance in the presence of (i) sample graphite plates, (ii) stand-alone LHC collimator jaws, and (iii) a full LHC collimator assembly are presented in detail. The measurement results are compared to both analytical theories and simulations. In addition, the consequences for the understanding of the LHC impedance are discussed.
id cern-1247961
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
record_format invenio
spelling cern-12479612019-09-30T06:29:59Zhttp://cds.cern.ch/record/1247961engRoncarolo, FCaspers, FriedhelmKroyer, TMetral, EMounet, NSalvant, BZotter, BComparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequenciesAccelerators and Storage RingsThe prediction of the transverse wall beam impedance at the first unstable betatron line (8 kHz) of the CERN Large Hadron Collider (LHC) is of paramount importance for understanding and controlling the related coupled-bunch instabilities. Until now only novel analytical formulas were available at this frequency. Recently, laboratory measurements and numerical simulations were performed to cross-check the analytical predictions. The experimental results based on the measurement of the variation of a probe coil inductance in the presence of (i) sample graphite plates, (ii) stand-alone LHC collimator jaws, and (iii) a full LHC collimator assembly are presented in detail. The measurement results are compared to both analytical theories and simulations. In addition, the consequences for the understanding of the LHC impedance are discussed.CERN-BE-2010-005oai:cds.cern.ch:12479612009-08-26
spellingShingle Accelerators and Storage Rings
Roncarolo, F
Caspers, Friedhelm
Kroyer, T
Metral, E
Mounet, N
Salvant, B
Zotter, B
Comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies
title Comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies
title_full Comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies
title_fullStr Comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies
title_full_unstemmed Comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies
title_short Comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies
title_sort comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1247961
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