High-resolution sampling of beam-driven plasma wakefields

Controlled particle acceleration in plasmas requires precise measurements of the excited wakefield. Here the authors report and demonstrate a high-resolution method to measure the effective longitudinal electric field of a beam-driven plasma-wakefield accelerator.

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Autores principales: S. Schröder, C. A. Lindstrøm, S. Bohlen, G. Boyle, R. D’Arcy, S. Diederichs, M. J. Garland, P. Gonzalez, A. Knetsch, V. Libov, P. Niknejadi, Kris Põder, L. Schaper, B. Schmidt, B. Sheeran, G. Tauscher, S. Wesch, J. Zemella, M. Zeng, J. Osterhoff
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/ab4b66a1ec2549e99fd0f93f92c5e87e
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spelling oai:doaj.org-article:ab4b66a1ec2549e99fd0f93f92c5e87e2021-12-02T13:23:47ZHigh-resolution sampling of beam-driven plasma wakefields10.1038/s41467-020-19811-92041-1723https://doaj.org/article/ab4b66a1ec2549e99fd0f93f92c5e87e2020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19811-9https://doaj.org/toc/2041-1723Controlled particle acceleration in plasmas requires precise measurements of the excited wakefield. Here the authors report and demonstrate a high-resolution method to measure the effective longitudinal electric field of a beam-driven plasma-wakefield accelerator.S. SchröderC. A. LindstrømS. BohlenG. BoyleR. D’ArcyS. DiederichsM. J. GarlandP. GonzalezA. KnetschV. LibovP. NiknejadiKris PõderL. SchaperB. SchmidtB. SheeranG. TauscherS. WeschJ. ZemellaM. ZengJ. OsterhoffNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-6 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
S. Schröder
C. A. Lindstrøm
S. Bohlen
G. Boyle
R. D’Arcy
S. Diederichs
M. J. Garland
P. Gonzalez
A. Knetsch
V. Libov
P. Niknejadi
Kris Põder
L. Schaper
B. Schmidt
B. Sheeran
G. Tauscher
S. Wesch
J. Zemella
M. Zeng
J. Osterhoff
High-resolution sampling of beam-driven plasma wakefields
description Controlled particle acceleration in plasmas requires precise measurements of the excited wakefield. Here the authors report and demonstrate a high-resolution method to measure the effective longitudinal electric field of a beam-driven plasma-wakefield accelerator.
format article
author S. Schröder
C. A. Lindstrøm
S. Bohlen
G. Boyle
R. D’Arcy
S. Diederichs
M. J. Garland
P. Gonzalez
A. Knetsch
V. Libov
P. Niknejadi
Kris Põder
L. Schaper
B. Schmidt
B. Sheeran
G. Tauscher
S. Wesch
J. Zemella
M. Zeng
J. Osterhoff
author_facet S. Schröder
C. A. Lindstrøm
S. Bohlen
G. Boyle
R. D’Arcy
S. Diederichs
M. J. Garland
P. Gonzalez
A. Knetsch
V. Libov
P. Niknejadi
Kris Põder
L. Schaper
B. Schmidt
B. Sheeran
G. Tauscher
S. Wesch
J. Zemella
M. Zeng
J. Osterhoff
author_sort S. Schröder
title High-resolution sampling of beam-driven plasma wakefields
title_short High-resolution sampling of beam-driven plasma wakefields
title_full High-resolution sampling of beam-driven plasma wakefields
title_fullStr High-resolution sampling of beam-driven plasma wakefields
title_full_unstemmed High-resolution sampling of beam-driven plasma wakefields
title_sort high-resolution sampling of beam-driven plasma wakefields
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/ab4b66a1ec2549e99fd0f93f92c5e87e
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