Imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavities

We demonstrate a novel scheme for imposing or removing large energy chirp on relativistic electron bunches. This method relies on the transverse-to-longitudinal mixing accomplished with a set of transverse deflecting cavities. The working principles of the new concept are explained using the first-o...

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Main Authors: Nikolai Yampolsky, Evgenya I. Simakov, Alexander Malyzhenkov
Format: Article
Language:English
Published: American Physical Society 2020-05-01
Series:Physical Review Accelerators and Beams
Online Access:http://doi.org/10.1103/PhysRevAccelBeams.23.054403
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spelling doaj-ece82d8eab6049aeb0896a5169d0fe252020-11-25T02:04:40ZengAmerican Physical SocietyPhysical Review Accelerators and Beams2469-98882020-05-0123505440310.1103/PhysRevAccelBeams.23.054403Imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavitiesNikolai YampolskyEvgenya I. SimakovAlexander MalyzhenkovWe demonstrate a novel scheme for imposing or removing large energy chirp on relativistic electron bunches. This method relies on the transverse-to-longitudinal mixing accomplished with a set of transverse deflecting cavities. The working principles of the new concept are explained using the first-order matrix formalism in the approximation of the linear single-particle dynamics. The scheme demonstrates versatility regarding the average beam energy and, hence, positioning along the accelerator beam line. The performance of the scheme is numerically investigated with the elegant particle-tracking code. It is shown that the associated nonlinear effects causing emittance deterioration for the extreme quantities of the total energy spread can be effectively compensated by optimization of the Twiss parameters while relying on the eigenemittance analysis. The impact of the longitudinal space charge effects on the beam dynamics in the proposed scheme is also investigated.http://doi.org/10.1103/PhysRevAccelBeams.23.054403
collection DOAJ
language English
format Article
sources DOAJ
author Nikolai Yampolsky
Evgenya I. Simakov
Alexander Malyzhenkov
spellingShingle Nikolai Yampolsky
Evgenya I. Simakov
Alexander Malyzhenkov
Imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavities
Physical Review Accelerators and Beams
author_facet Nikolai Yampolsky
Evgenya I. Simakov
Alexander Malyzhenkov
author_sort Nikolai Yampolsky
title Imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavities
title_short Imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavities
title_full Imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavities
title_fullStr Imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavities
title_full_unstemmed Imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavities
title_sort imposing strong correlated energy spread on relativistic bunches with transverse deflecting cavities
publisher American Physical Society
series Physical Review Accelerators and Beams
issn 2469-9888
publishDate 2020-05-01
description We demonstrate a novel scheme for imposing or removing large energy chirp on relativistic electron bunches. This method relies on the transverse-to-longitudinal mixing accomplished with a set of transverse deflecting cavities. The working principles of the new concept are explained using the first-order matrix formalism in the approximation of the linear single-particle dynamics. The scheme demonstrates versatility regarding the average beam energy and, hence, positioning along the accelerator beam line. The performance of the scheme is numerically investigated with the elegant particle-tracking code. It is shown that the associated nonlinear effects causing emittance deterioration for the extreme quantities of the total energy spread can be effectively compensated by optimization of the Twiss parameters while relying on the eigenemittance analysis. The impact of the longitudinal space charge effects on the beam dynamics in the proposed scheme is also investigated.
url http://doi.org/10.1103/PhysRevAccelBeams.23.054403
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AT alexandermalyzhenkov imposingstrongcorrelatedenergyspreadonrelativisticbuncheswithtransversedeflectingcavities
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