Numerical calculation of transverse coupling impedances: Comparison to Spallation Neutron Source extraction kicker measurements

The study of beam dynamics and the localization of potential sources of instabilities are important tasks in the design of modern, high-intensity particle accelerators. In the case of synchrotrons and storage rings, coupling impedance data are needed to characterize the parasitic interaction of crit...

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Main Authors: B. Doliwa, E. Arévalo, T. Weiland
Format: Article
Language:English
Published: American Physical Society 2007-10-01
Series:Physical Review Special Topics. Accelerators and Beams
Online Access:http://doi.org/10.1103/PhysRevSTAB.10.102001
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spelling doaj-d589e56f88c24129be01191ff210c4212020-11-24T21:28:56ZengAmerican Physical SocietyPhysical Review Special Topics. Accelerators and Beams1098-44022007-10-01101010200110.1103/PhysRevSTAB.10.102001Numerical calculation of transverse coupling impedances: Comparison to Spallation Neutron Source extraction kicker measurementsB. DoliwaE. ArévaloT. WeilandThe study of beam dynamics and the localization of potential sources of instabilities are important tasks in the design of modern, high-intensity particle accelerators. In the case of synchrotrons and storage rings, coupling impedance data are needed to characterize the parasitic interaction of critical components with the beam. In this article we demonstrate the application of numerical field simulations to the computation of transverse kicker coupling impedances. Based on the 3D simulation results, a parametrized model is developed to incorporate the impedance of an arbitrary pulse-forming network attached to the kicker. Detailed comparisons of numerical results with twin-wire and direct measurements are discussed at the example of the Spallation Neutron Source extraction kicker.http://doi.org/10.1103/PhysRevSTAB.10.102001
collection DOAJ
language English
format Article
sources DOAJ
author B. Doliwa
E. Arévalo
T. Weiland
spellingShingle B. Doliwa
E. Arévalo
T. Weiland
Numerical calculation of transverse coupling impedances: Comparison to Spallation Neutron Source extraction kicker measurements
Physical Review Special Topics. Accelerators and Beams
author_facet B. Doliwa
E. Arévalo
T. Weiland
author_sort B. Doliwa
title Numerical calculation of transverse coupling impedances: Comparison to Spallation Neutron Source extraction kicker measurements
title_short Numerical calculation of transverse coupling impedances: Comparison to Spallation Neutron Source extraction kicker measurements
title_full Numerical calculation of transverse coupling impedances: Comparison to Spallation Neutron Source extraction kicker measurements
title_fullStr Numerical calculation of transverse coupling impedances: Comparison to Spallation Neutron Source extraction kicker measurements
title_full_unstemmed Numerical calculation of transverse coupling impedances: Comparison to Spallation Neutron Source extraction kicker measurements
title_sort numerical calculation of transverse coupling impedances: comparison to spallation neutron source extraction kicker measurements
publisher American Physical Society
series Physical Review Special Topics. Accelerators and Beams
issn 1098-4402
publishDate 2007-10-01
description The study of beam dynamics and the localization of potential sources of instabilities are important tasks in the design of modern, high-intensity particle accelerators. In the case of synchrotrons and storage rings, coupling impedance data are needed to characterize the parasitic interaction of critical components with the beam. In this article we demonstrate the application of numerical field simulations to the computation of transverse kicker coupling impedances. Based on the 3D simulation results, a parametrized model is developed to incorporate the impedance of an arbitrary pulse-forming network attached to the kicker. Detailed comparisons of numerical results with twin-wire and direct measurements are discussed at the example of the Spallation Neutron Source extraction kicker.
url http://doi.org/10.1103/PhysRevSTAB.10.102001
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