Fokker-Planck analysis of transverse collective instabilities in electron storage rings

We analyze single bunch transverse instabilities due to wakefields using a Fokker-Planck model. We first expand on the work of T. Suzuki, Part. Accel. 12, 237 (1982)PLACBD0031-2460 to derive the theoretical model including chromaticity, both dipolar and quadrupolar transverse wakefields, and the eff...

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Main Author: Ryan R. Lindberg
Format: Article
Language:English
Published: American Physical Society 2016-12-01
Series:Physical Review Accelerators and Beams
Online Access:http://doi.org/10.1103/PhysRevAccelBeams.19.124402
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spelling doaj-6e5a765f90864e67954f58086628fbcc2020-11-25T01:41:50ZengAmerican Physical SocietyPhysical Review Accelerators and Beams2469-98882016-12-01191212440210.1103/PhysRevAccelBeams.19.124402Fokker-Planck analysis of transverse collective instabilities in electron storage ringsRyan R. LindbergWe analyze single bunch transverse instabilities due to wakefields using a Fokker-Planck model. We first expand on the work of T. Suzuki, Part. Accel. 12, 237 (1982)PLACBD0031-2460 to derive the theoretical model including chromaticity, both dipolar and quadrupolar transverse wakefields, and the effects of damping and diffusion due to the synchrotron radiation. We reduce the problem to a linear matrix equation, whose eigenvalues and eigenvectors determine the collective stability of the beam. We then show that various predictions of the theory agree quite well with results from particle tracking simulations, including the threshold current for transverse instability and the profile of the unstable mode. In particular, we find that predicting collective stability for high energy electron beams at moderate to large values of chromaticity requires the full Fokker-Planck analysis to properly account for the effects of damping and diffusion due to synchrotron radiation.http://doi.org/10.1103/PhysRevAccelBeams.19.124402
collection DOAJ
language English
format Article
sources DOAJ
author Ryan R. Lindberg
spellingShingle Ryan R. Lindberg
Fokker-Planck analysis of transverse collective instabilities in electron storage rings
Physical Review Accelerators and Beams
author_facet Ryan R. Lindberg
author_sort Ryan R. Lindberg
title Fokker-Planck analysis of transverse collective instabilities in electron storage rings
title_short Fokker-Planck analysis of transverse collective instabilities in electron storage rings
title_full Fokker-Planck analysis of transverse collective instabilities in electron storage rings
title_fullStr Fokker-Planck analysis of transverse collective instabilities in electron storage rings
title_full_unstemmed Fokker-Planck analysis of transverse collective instabilities in electron storage rings
title_sort fokker-planck analysis of transverse collective instabilities in electron storage rings
publisher American Physical Society
series Physical Review Accelerators and Beams
issn 2469-9888
publishDate 2016-12-01
description We analyze single bunch transverse instabilities due to wakefields using a Fokker-Planck model. We first expand on the work of T. Suzuki, Part. Accel. 12, 237 (1982)PLACBD0031-2460 to derive the theoretical model including chromaticity, both dipolar and quadrupolar transverse wakefields, and the effects of damping and diffusion due to the synchrotron radiation. We reduce the problem to a linear matrix equation, whose eigenvalues and eigenvectors determine the collective stability of the beam. We then show that various predictions of the theory agree quite well with results from particle tracking simulations, including the threshold current for transverse instability and the profile of the unstable mode. In particular, we find that predicting collective stability for high energy electron beams at moderate to large values of chromaticity requires the full Fokker-Planck analysis to properly account for the effects of damping and diffusion due to synchrotron radiation.
url http://doi.org/10.1103/PhysRevAccelBeams.19.124402
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