Matrix model for collective phenomena in electron beam’s longitudinal phase space

Abstract The possibility to predict, characterize and minimize the presence of spurious harmonic content in the longitudinal profile of high brightness electron beams, namely the microbunching instability, has become vital to ensure accurate modeling and reliable operation of radiofrequency and plas...

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Main Authors: Giovanni Perosa, Simone Di Mitri
Format: Article
Language:English
Published: Nature Publishing Group 2021-04-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-87041-0
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spelling doaj-376d7617cf1a4f62932eb4f013355f9d2021-04-18T11:37:01ZengNature Publishing GroupScientific Reports2045-23222021-04-0111111010.1038/s41598-021-87041-0Matrix model for collective phenomena in electron beam’s longitudinal phase spaceGiovanni Perosa0Simone Di Mitri1Dipartimento di Fisica, Università degli Studi di TriesteDipartimento di Fisica, Università degli Studi di TriesteAbstract The possibility to predict, characterize and minimize the presence of spurious harmonic content in the longitudinal profile of high brightness electron beams, namely the microbunching instability, has become vital to ensure accurate modeling and reliable operation of radiofrequency and plasma-based linear accelerators such as those driving free-electron lasers. Recently, the impact of intrabeam scattering (IBS) on the instability has been experimentally demonstrated by the authors. This work complements that experimental study by extending existing theories in a self-consistent, piece-wise calculation of IBS in single pass linacs and multi-bend transfer lines. New expressions for the IBS are introduced in two different semi-analytical models of microbunching. The accuracy of the proposed models and the range of beam parameters to which they apply is discussed. The overall modeling turns out to be a fast comprehensive tool for the optimization of linac-driven free-electron lasers.https://doi.org/10.1038/s41598-021-87041-0
collection DOAJ
language English
format Article
sources DOAJ
author Giovanni Perosa
Simone Di Mitri
spellingShingle Giovanni Perosa
Simone Di Mitri
Matrix model for collective phenomena in electron beam’s longitudinal phase space
Scientific Reports
author_facet Giovanni Perosa
Simone Di Mitri
author_sort Giovanni Perosa
title Matrix model for collective phenomena in electron beam’s longitudinal phase space
title_short Matrix model for collective phenomena in electron beam’s longitudinal phase space
title_full Matrix model for collective phenomena in electron beam’s longitudinal phase space
title_fullStr Matrix model for collective phenomena in electron beam’s longitudinal phase space
title_full_unstemmed Matrix model for collective phenomena in electron beam’s longitudinal phase space
title_sort matrix model for collective phenomena in electron beam’s longitudinal phase space
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-04-01
description Abstract The possibility to predict, characterize and minimize the presence of spurious harmonic content in the longitudinal profile of high brightness electron beams, namely the microbunching instability, has become vital to ensure accurate modeling and reliable operation of radiofrequency and plasma-based linear accelerators such as those driving free-electron lasers. Recently, the impact of intrabeam scattering (IBS) on the instability has been experimentally demonstrated by the authors. This work complements that experimental study by extending existing theories in a self-consistent, piece-wise calculation of IBS in single pass linacs and multi-bend transfer lines. New expressions for the IBS are introduced in two different semi-analytical models of microbunching. The accuracy of the proposed models and the range of beam parameters to which they apply is discussed. The overall modeling turns out to be a fast comprehensive tool for the optimization of linac-driven free-electron lasers.
url https://doi.org/10.1038/s41598-021-87041-0
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