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Simulation study of betatron radiation in AWAKE Run 2 experiment

The spectroscopy of betatron radiation from the focusing plasma column can work as a powerful non-invasive beam diagnostic method for plasma wakefield acceleration experiments such as the AWAKE. In this paper, the effects of radial size mismatch and off-axis injection on the beam dynamics, as well a...

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Autores principales: Liang, Linbo, Xia, Guoxing, Saberi, Hossein, Farmer, John Patrick, Pukhov, Alexander
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2809489
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author Liang, Linbo
Xia, Guoxing
Saberi, Hossein
Farmer, John Patrick
Pukhov, Alexander
author_facet Liang, Linbo
Xia, Guoxing
Saberi, Hossein
Farmer, John Patrick
Pukhov, Alexander
author_sort Liang, Linbo
collection CERN
description The spectroscopy of betatron radiation from the focusing plasma column can work as a powerful non-invasive beam diagnostic method for plasma wakefield acceleration experiments such as the AWAKE. In this paper, the effects of radial size mismatch and off-axis injection on the beam dynamics, as well as the spectral features of the betatron radiation emitted by the witness electron bunch in the quasi-linear proton-driven plasma wakefield are studied. It is shown that the evolution of the critical betatron photon energy and the overall photon angular distribution can effectively reveal the initial injection conditions of the witness electron bunch. The possibility of using this method for the diagnostics of the seed electron bunch in the proton self-modulation stage of AWAKE Run 2 is also discussed.
id cern-2809489
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28094892023-06-28T03:54:40Zhttp://cds.cern.ch/record/2809489engLiang, LinboXia, GuoxingSaberi, HosseinFarmer, John PatrickPukhov, AlexanderSimulation study of betatron radiation in AWAKE Run 2 experimentphysics.acc-phAccelerators and Storage RingsThe spectroscopy of betatron radiation from the focusing plasma column can work as a powerful non-invasive beam diagnostic method for plasma wakefield acceleration experiments such as the AWAKE. In this paper, the effects of radial size mismatch and off-axis injection on the beam dynamics, as well as the spectral features of the betatron radiation emitted by the witness electron bunch in the quasi-linear proton-driven plasma wakefield are studied. It is shown that the evolution of the critical betatron photon energy and the overall photon angular distribution can effectively reveal the initial injection conditions of the witness electron bunch. The possibility of using this method for the diagnostics of the seed electron bunch in the proton self-modulation stage of AWAKE Run 2 is also discussed.arXiv:2204.13199oai:cds.cern.ch:28094892022-04-27
spellingShingle physics.acc-ph
Accelerators and Storage Rings
Liang, Linbo
Xia, Guoxing
Saberi, Hossein
Farmer, John Patrick
Pukhov, Alexander
Simulation study of betatron radiation in AWAKE Run 2 experiment
title Simulation study of betatron radiation in AWAKE Run 2 experiment
title_full Simulation study of betatron radiation in AWAKE Run 2 experiment
title_fullStr Simulation study of betatron radiation in AWAKE Run 2 experiment
title_full_unstemmed Simulation study of betatron radiation in AWAKE Run 2 experiment
title_short Simulation study of betatron radiation in AWAKE Run 2 experiment
title_sort simulation study of betatron radiation in awake run 2 experiment
topic physics.acc-ph
Accelerators and Storage Rings
url http://cds.cern.ch/record/2809489
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AT xiaguoxing simulationstudyofbetatronradiationinawakerun2experiment
AT saberihossein simulationstudyofbetatronradiationinawakerun2experiment
AT farmerjohnpatrick simulationstudyofbetatronradiationinawakerun2experiment
AT pukhovalexander simulationstudyofbetatronradiationinawakerun2experiment