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Observation of High Transformer Ratio Plasma Wakefield Acceleration

Particle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techniques for powering future compact light-source and high-energy physics applications. Here, a driving particle bunch excites a wakefield response in a plasma medium, which may rapidly accelerate a trail...

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Detalles Bibliográficos
Autores principales: Loisch, Gregor, Asova, Galina, Boonpornprasert, Prach, Brinkmann, Reinhard, Chen, Ye, Engel, Johannes, Good, James, Gross, Matthias, Grüner, Florian, Huck, Holger, Kalantaryan, Davit, Krasilnikov, Mikhail, Lishilin, Osip, Martinez de la Ossa, Alberto, Mehrling, Timon J, Melkumyan, David, Oppelt, Anne, Osterhoff, Jens, Qian, Houjun, Renier, Yves, Stephan, Frank, Tenholt, Carmen, Wohlfarth, Valentin, Zhao, Quantang
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevLett.121.064801
http://cds.cern.ch/record/2644157
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author Loisch, Gregor
Asova, Galina
Boonpornprasert, Prach
Brinkmann, Reinhard
Chen, Ye
Engel, Johannes
Good, James
Gross, Matthias
Grüner, Florian
Huck, Holger
Kalantaryan, Davit
Krasilnikov, Mikhail
Lishilin, Osip
Martinez de la Ossa, Alberto
Mehrling, Timon J
Melkumyan, David
Oppelt, Anne
Osterhoff, Jens
Qian, Houjun
Renier, Yves
Stephan, Frank
Tenholt, Carmen
Wohlfarth, Valentin
Zhao, Quantang
author_facet Loisch, Gregor
Asova, Galina
Boonpornprasert, Prach
Brinkmann, Reinhard
Chen, Ye
Engel, Johannes
Good, James
Gross, Matthias
Grüner, Florian
Huck, Holger
Kalantaryan, Davit
Krasilnikov, Mikhail
Lishilin, Osip
Martinez de la Ossa, Alberto
Mehrling, Timon J
Melkumyan, David
Oppelt, Anne
Osterhoff, Jens
Qian, Houjun
Renier, Yves
Stephan, Frank
Tenholt, Carmen
Wohlfarth, Valentin
Zhao, Quantang
author_sort Loisch, Gregor
collection CERN
description Particle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techniques for powering future compact light-source and high-energy physics applications. Here, a driving particle bunch excites a wakefield response in a plasma medium, which may rapidly accelerate a trailing witness beam. In this Letter, we present the measurement of ratios of acceleration of the witness bunch to deceleration of the driver bunch, the so-called transformer ratio, significantly exceeding the fundamental theoretical and thus far experimental limit of 2 in a PWFA. An electron bunch with ramped current profile was utilized to accelerate a witness bunch with a transformer ratio of $4.6_{-0.7}^{+2.2}$ in a plasma with length $\sim 10$  cm, also demonstrating stable transport of driver bunches with lengths on the order of the plasma wavelength.
id oai-inspirehep.net-1686383
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16863832022-08-10T12:28:20Zdoi:10.1103/PhysRevLett.121.064801http://cds.cern.ch/record/2644157engLoisch, GregorAsova, GalinaBoonpornprasert, PrachBrinkmann, ReinhardChen, YeEngel, JohannesGood, JamesGross, MatthiasGrüner, FlorianHuck, HolgerKalantaryan, DavitKrasilnikov, MikhailLishilin, OsipMartinez de la Ossa, AlbertoMehrling, Timon JMelkumyan, DavidOppelt, AnneOsterhoff, JensQian, HoujunRenier, YvesStephan, FrankTenholt, CarmenWohlfarth, ValentinZhao, QuantangObservation of High Transformer Ratio Plasma Wakefield AccelerationAccelerators and Storage RingsParticle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techniques for powering future compact light-source and high-energy physics applications. Here, a driving particle bunch excites a wakefield response in a plasma medium, which may rapidly accelerate a trailing witness beam. In this Letter, we present the measurement of ratios of acceleration of the witness bunch to deceleration of the driver bunch, the so-called transformer ratio, significantly exceeding the fundamental theoretical and thus far experimental limit of 2 in a PWFA. An electron bunch with ramped current profile was utilized to accelerate a witness bunch with a transformer ratio of $4.6_{-0.7}^{+2.2}$ in a plasma with length $\sim 10$  cm, also demonstrating stable transport of driver bunches with lengths on the order of the plasma wavelength.oai:inspirehep.net:16863832018
spellingShingle Accelerators and Storage Rings
Loisch, Gregor
Asova, Galina
Boonpornprasert, Prach
Brinkmann, Reinhard
Chen, Ye
Engel, Johannes
Good, James
Gross, Matthias
Grüner, Florian
Huck, Holger
Kalantaryan, Davit
Krasilnikov, Mikhail
Lishilin, Osip
Martinez de la Ossa, Alberto
Mehrling, Timon J
Melkumyan, David
Oppelt, Anne
Osterhoff, Jens
Qian, Houjun
Renier, Yves
Stephan, Frank
Tenholt, Carmen
Wohlfarth, Valentin
Zhao, Quantang
Observation of High Transformer Ratio Plasma Wakefield Acceleration
title Observation of High Transformer Ratio Plasma Wakefield Acceleration
title_full Observation of High Transformer Ratio Plasma Wakefield Acceleration
title_fullStr Observation of High Transformer Ratio Plasma Wakefield Acceleration
title_full_unstemmed Observation of High Transformer Ratio Plasma Wakefield Acceleration
title_short Observation of High Transformer Ratio Plasma Wakefield Acceleration
title_sort observation of high transformer ratio plasma wakefield acceleration
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevLett.121.064801
http://cds.cern.ch/record/2644157
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