Generalization of coupled S-parameter calculation to compute beam impedances in particle accelerators

In this article, a decomposition approach for the computation of beam coupling impedances is proposed. This approach can account for the mutual electromagnetic coupling in long accelerator structures consisting of several consecutive segments. The method is based on the description of the individual...

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Main Authors: Thomas Flisgen, Erion Gjonaj, Hans-Walter Glock, Andranik Tsakanian
Format: Article
Language:English
Published: American Physical Society 2020-03-01
Series:Physical Review Accelerators and Beams
Online Access:http://doi.org/10.1103/PhysRevAccelBeams.23.034601
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author Thomas Flisgen
Erion Gjonaj
Hans-Walter Glock
Andranik Tsakanian
author_facet Thomas Flisgen
Erion Gjonaj
Hans-Walter Glock
Andranik Tsakanian
author_sort Thomas Flisgen
collection DOAJ
description In this article, a decomposition approach for the computation of beam coupling impedances is proposed. This approach can account for the mutual electromagnetic coupling in long accelerator structures consisting of several consecutive segments. The method is based on the description of the individual segments using a multimodal network matrix formulation in which the charged particle beam is considered as an additional port. Then, the generalized multimodal network matrices of all segments are combined to a multimodal network matrix of the complete structure. The beam coupling impedance as well as the scattering parameters of the full structure are recovered as particular matrix elements in this multimodal network matrix. The new method generalizes Coupled S-Parameter Calculation (CSC) introduced in earlier work such that charged particle beams are considered. Consequently, the introduced scheme is referred to as CSCBEAM. Application examples for realistic accelerator components such as the simulation of a full TESLA 1.3 GHz-cavity of the European XFEL are provided. These simulations demonstrate the high accuracy and numerical performance of the proposed method.
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spelling doaj.art-6735ae47b10a4aa7a0910e99feb4602a2022-12-21T23:06:07ZengAmerican Physical SocietyPhysical Review Accelerators and Beams2469-98882020-03-0123303460110.1103/PhysRevAccelBeams.23.034601Generalization of coupled S-parameter calculation to compute beam impedances in particle acceleratorsThomas FlisgenErion GjonajHans-Walter GlockAndranik TsakanianIn this article, a decomposition approach for the computation of beam coupling impedances is proposed. This approach can account for the mutual electromagnetic coupling in long accelerator structures consisting of several consecutive segments. The method is based on the description of the individual segments using a multimodal network matrix formulation in which the charged particle beam is considered as an additional port. Then, the generalized multimodal network matrices of all segments are combined to a multimodal network matrix of the complete structure. The beam coupling impedance as well as the scattering parameters of the full structure are recovered as particular matrix elements in this multimodal network matrix. The new method generalizes Coupled S-Parameter Calculation (CSC) introduced in earlier work such that charged particle beams are considered. Consequently, the introduced scheme is referred to as CSCBEAM. Application examples for realistic accelerator components such as the simulation of a full TESLA 1.3 GHz-cavity of the European XFEL are provided. These simulations demonstrate the high accuracy and numerical performance of the proposed method.http://doi.org/10.1103/PhysRevAccelBeams.23.034601
spellingShingle Thomas Flisgen
Erion Gjonaj
Hans-Walter Glock
Andranik Tsakanian
Generalization of coupled S-parameter calculation to compute beam impedances in particle accelerators
Physical Review Accelerators and Beams
title Generalization of coupled S-parameter calculation to compute beam impedances in particle accelerators
title_full Generalization of coupled S-parameter calculation to compute beam impedances in particle accelerators
title_fullStr Generalization of coupled S-parameter calculation to compute beam impedances in particle accelerators
title_full_unstemmed Generalization of coupled S-parameter calculation to compute beam impedances in particle accelerators
title_short Generalization of coupled S-parameter calculation to compute beam impedances in particle accelerators
title_sort generalization of coupled s parameter calculation to compute beam impedances in particle accelerators
url http://doi.org/10.1103/PhysRevAccelBeams.23.034601
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