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Impedances of an Infinitely Long and Axisymmetric Multilayer Beam Pipe: Matrix Formalism and Multimode Analysis

Using B. Zotter’s formalism, we present here a novel, efficient and exact matrix method for the field matching determination of the electromagnetic field components created by an offset point charge travelling at any speed in an infinitely long circular multilayer beam pipe. This method improves by...

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Detalles Bibliográficos
Autores principales: Mounet, N, Metral, E
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1269896
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author Mounet, N
Metral, E
author_facet Mounet, N
Metral, E
author_sort Mounet, N
collection CERN
description Using B. Zotter’s formalism, we present here a novel, efficient and exact matrix method for the field matching determination of the electromagnetic field components created by an offset point charge travelling at any speed in an infinitely long circular multilayer beam pipe. This method improves by a factor of more than one hundred the computational time with three layers and allows the computation for more layers than three. We also generalize our analysis to any azimuthal mode and finally perform the summation on all such modes in the impedance formulae. In particular the exact multimode direct space-charge impedances (both longitudinal and transverse) are given, as well as the wall impedance to any order of precision.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
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spelling cern-12698962022-08-17T13:24:32Zhttp://cds.cern.ch/record/1269896engMounet, NMetral, EImpedances of an Infinitely Long and Axisymmetric Multilayer Beam Pipe: Matrix Formalism and Multimode AnalysisAccelerators and Storage RingsUsing B. Zotter’s formalism, we present here a novel, efficient and exact matrix method for the field matching determination of the electromagnetic field components created by an offset point charge travelling at any speed in an infinitely long circular multilayer beam pipe. This method improves by a factor of more than one hundred the computational time with three layers and allows the computation for more layers than three. We also generalize our analysis to any azimuthal mode and finally perform the summation on all such modes in the impedance formulae. In particular the exact multimode direct space-charge impedances (both longitudinal and transverse) are given, as well as the wall impedance to any order of precision.CERN-ATS-2010-065oai:cds.cern.ch:12698962010-06-04
spellingShingle Accelerators and Storage Rings
Mounet, N
Metral, E
Impedances of an Infinitely Long and Axisymmetric Multilayer Beam Pipe: Matrix Formalism and Multimode Analysis
title Impedances of an Infinitely Long and Axisymmetric Multilayer Beam Pipe: Matrix Formalism and Multimode Analysis
title_full Impedances of an Infinitely Long and Axisymmetric Multilayer Beam Pipe: Matrix Formalism and Multimode Analysis
title_fullStr Impedances of an Infinitely Long and Axisymmetric Multilayer Beam Pipe: Matrix Formalism and Multimode Analysis
title_full_unstemmed Impedances of an Infinitely Long and Axisymmetric Multilayer Beam Pipe: Matrix Formalism and Multimode Analysis
title_short Impedances of an Infinitely Long and Axisymmetric Multilayer Beam Pipe: Matrix Formalism and Multimode Analysis
title_sort impedances of an infinitely long and axisymmetric multilayer beam pipe: matrix formalism and multimode analysis
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1269896
work_keys_str_mv AT mounetn impedancesofaninfinitelylongandaxisymmetricmultilayerbeampipematrixformalismandmultimodeanalysis
AT metrale impedancesofaninfinitelylongandaxisymmetricmultilayerbeampipematrixformalismandmultimodeanalysis