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Closed Form Formulas of the Indirect Space Charge Wake Function for Axisymmetric Structures

Indirect space charge contributes significantly to the impedance of non-ultrarelativistic machines such as the LEIR, PSB and PS at CERN. While general expressions exist in frequency domain for the beam coupling impedance, the time domain wake function is typically obtained numerically, thanks to an...

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Autores principales: Mounet, Nicolas, Dadiani, Ekaterine, Métral, Elias, Rahemtulla, Adam, Zannini, Carlo
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-HB2021-MOP10
http://cds.cern.ch/record/2841806
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author Mounet, Nicolas
Dadiani, Ekaterine
Métral, Elias
Rahemtulla, Adam
Zannini, Carlo
author_facet Mounet, Nicolas
Dadiani, Ekaterine
Métral, Elias
Rahemtulla, Adam
Zannini, Carlo
author_sort Mounet, Nicolas
collection CERN
description Indirect space charge contributes significantly to the impedance of non-ultrarelativistic machines such as the LEIR, PSB and PS at CERN. While general expressions exist in frequency domain for the beam coupling impedance, the time domain wake function is typically obtained numerically, thanks to an inverse Fourier transform. An analytical expression for the indirect space charge wake function, including the time dependence as a function of particle velocity, is nevertheless highly desirable to improve the accuracy of time domain beam dynamics simulations of coherent instabilities. In this work, a general formula for the indirect space charge wake function is derived from the residue theorem. Moreover, simple approximated expressions reproducing the time and velocity dependence are also provided, which can even be corrected to recover an exact formula, thanks to a numerical factor computed once for all. The expressions obtained are successfully benchmarked with a purely numerical approach based on the Fourier transform.
id cern-2841806
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28418062022-11-23T21:39:43Zdoi:10.18429/JACoW-HB2021-MOP10http://cds.cern.ch/record/2841806engMounet, NicolasDadiani, EkaterineMétral, EliasRahemtulla, AdamZannini, CarloClosed Form Formulas of the Indirect Space Charge Wake Function for Axisymmetric StructuresAccelerators and Storage RingsIndirect space charge contributes significantly to the impedance of non-ultrarelativistic machines such as the LEIR, PSB and PS at CERN. While general expressions exist in frequency domain for the beam coupling impedance, the time domain wake function is typically obtained numerically, thanks to an inverse Fourier transform. An analytical expression for the indirect space charge wake function, including the time dependence as a function of particle velocity, is nevertheless highly desirable to improve the accuracy of time domain beam dynamics simulations of coherent instabilities. In this work, a general formula for the indirect space charge wake function is derived from the residue theorem. Moreover, simple approximated expressions reproducing the time and velocity dependence are also provided, which can even be corrected to recover an exact formula, thanks to a numerical factor computed once for all. The expressions obtained are successfully benchmarked with a purely numerical approach based on the Fourier transform.oai:cds.cern.ch:28418062022
spellingShingle Accelerators and Storage Rings
Mounet, Nicolas
Dadiani, Ekaterine
Métral, Elias
Rahemtulla, Adam
Zannini, Carlo
Closed Form Formulas of the Indirect Space Charge Wake Function for Axisymmetric Structures
title Closed Form Formulas of the Indirect Space Charge Wake Function for Axisymmetric Structures
title_full Closed Form Formulas of the Indirect Space Charge Wake Function for Axisymmetric Structures
title_fullStr Closed Form Formulas of the Indirect Space Charge Wake Function for Axisymmetric Structures
title_full_unstemmed Closed Form Formulas of the Indirect Space Charge Wake Function for Axisymmetric Structures
title_short Closed Form Formulas of the Indirect Space Charge Wake Function for Axisymmetric Structures
title_sort closed form formulas of the indirect space charge wake function for axisymmetric structures
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-HB2021-MOP10
http://cds.cern.ch/record/2841806
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AT rahemtullaadam closedformformulasoftheindirectspacechargewakefunctionforaxisymmetricstructures
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