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Wake-function, impedance, and energy loss determination for two countermoving particle beams

This paper deals with the determination of the wake-function, impedance and energy loss due to surrounding accelerator components of two countermoving beams, i.e., two beams moving in opposite directions. Differently from the classical case, the distance between source and test charges cannot be con...

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Autores principales: Teofili, L, Arpaia, P, Giordano, F, Lamas, I, Rumolo, G, Salvant, B, Zannini, C, Migliorati, M
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.24.041001
http://cds.cern.ch/record/2764909
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author Teofili, L
Arpaia, P
Giordano, F
Lamas, I
Rumolo, G
Salvant, B
Zannini, C
Migliorati, M
author_facet Teofili, L
Arpaia, P
Giordano, F
Lamas, I
Rumolo, G
Salvant, B
Zannini, C
Migliorati, M
author_sort Teofili, L
collection CERN
description This paper deals with the determination of the wake-function, impedance and energy loss due to surrounding accelerator components of two countermoving beams, i.e., two beams moving in opposite directions. Differently from the classical case, the distance between source and test charges cannot be considered constant. The paper defines a generalized wake-function, independent of the source and test particle’s direction of motion. From this generalized wake-function a wake-potential is derived. The paper focuses in particular on the longitudinal direction. The expression of the energy dissipated by two beams transiting in the same vacuum chamber is obtained. This expression is valid both in the comoving and countermoving beam scenario. Subsequently, the proposed model is benchmarked by calculating the longitudinal co and countermoving wake-functions, the corresponding impedances and wake-potentials for two simple geometries (a circular pipe and a pillbox cavity) traversed by two countermoving beams, and by comparing the results with the ones of the electromagnetic code CST Studio Suite. Finally, for the pillbox geometry, the energy loss of the two countermoving beams and their rf-heating are investigated.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
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spelling oai-inspirehep.net-18577552021-04-22T21:02:11Zdoi:10.1103/PhysRevAccelBeams.24.041001http://cds.cern.ch/record/2764909engTeofili, LArpaia, PGiordano, FLamas, IRumolo, GSalvant, BZannini, CMigliorati, MWake-function, impedance, and energy loss determination for two countermoving particle beamsAccelerators and Storage RingsThis paper deals with the determination of the wake-function, impedance and energy loss due to surrounding accelerator components of two countermoving beams, i.e., two beams moving in opposite directions. Differently from the classical case, the distance between source and test charges cannot be considered constant. The paper defines a generalized wake-function, independent of the source and test particle’s direction of motion. From this generalized wake-function a wake-potential is derived. The paper focuses in particular on the longitudinal direction. The expression of the energy dissipated by two beams transiting in the same vacuum chamber is obtained. This expression is valid both in the comoving and countermoving beam scenario. Subsequently, the proposed model is benchmarked by calculating the longitudinal co and countermoving wake-functions, the corresponding impedances and wake-potentials for two simple geometries (a circular pipe and a pillbox cavity) traversed by two countermoving beams, and by comparing the results with the ones of the electromagnetic code CST Studio Suite. Finally, for the pillbox geometry, the energy loss of the two countermoving beams and their rf-heating are investigated.oai:inspirehep.net:18577552021
spellingShingle Accelerators and Storage Rings
Teofili, L
Arpaia, P
Giordano, F
Lamas, I
Rumolo, G
Salvant, B
Zannini, C
Migliorati, M
Wake-function, impedance, and energy loss determination for two countermoving particle beams
title Wake-function, impedance, and energy loss determination for two countermoving particle beams
title_full Wake-function, impedance, and energy loss determination for two countermoving particle beams
title_fullStr Wake-function, impedance, and energy loss determination for two countermoving particle beams
title_full_unstemmed Wake-function, impedance, and energy loss determination for two countermoving particle beams
title_short Wake-function, impedance, and energy loss determination for two countermoving particle beams
title_sort wake-function, impedance, and energy loss determination for two countermoving particle beams
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevAccelBeams.24.041001
http://cds.cern.ch/record/2764909
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