Cargando…

Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question

Laser-wakefield accelerators are compact devices capable of delivering ultra-short electron bunches with pC-level charge and MeV-GeV energy by exploiting the ultra-high electric fields arising from the interaction of intense laser pulses with plasma. We show experimentally and through numerical simu...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, X, Brunetti, Enrico, Reboredo Gil, David, Welsh, Gregor H, Li, Y.F, Cipiccia, Silvia, Ersfeld, Bernhard, Grant, D. W, Grant, P. A, Islam, Muhammad, Tooley, M.B, Vieux, Gregory, Wiggins, Sally, Sheng, Zheng-Ming, Jaroszynski, Dino
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: Sci. Rep. 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1038/srep43910
http://cds.cern.ch/record/2269963
_version_ 1780954813748477952
author Yang, X
Brunetti, Enrico
Reboredo Gil, David
Welsh, Gregor H
Li, Y.F
Cipiccia, Silvia
Ersfeld, Bernhard
Grant, D. W
Grant, P. A
Islam, Muhammad
Tooley, M.B
Vieux, Gregory
Wiggins, Sally
Sheng, Zheng-Ming
Jaroszynski, Dino
author_facet Yang, X
Brunetti, Enrico
Reboredo Gil, David
Welsh, Gregor H
Li, Y.F
Cipiccia, Silvia
Ersfeld, Bernhard
Grant, D. W
Grant, P. A
Islam, Muhammad
Tooley, M.B
Vieux, Gregory
Wiggins, Sally
Sheng, Zheng-Ming
Jaroszynski, Dino
author_sort Yang, X
collection CERN
description Laser-wakefield accelerators are compact devices capable of delivering ultra-short electron bunches with pC-level charge and MeV-GeV energy by exploiting the ultra-high electric fields arising from the interaction of intense laser pulses with plasma. We show experimentally and through numerical simulations that a high-energy electron beam is produced simultaneously with two stable lowerenergy beams that are ejected in oblique and counter-propagating directions, typically carrying off 5–10% of the initial laser energy. A MeV, 10s nC oblique beam is ejected in a 30°–60° hollow cone, which is filled with more energetic electrons determined by the injection dynamics. A nC-level, 100s keV backward-directed beam is mainly produced at the leading edge of the plasma column. We discuss the apportioning of absorbed laser energy amongst the three beams. Knowledge of the distribution of laser energy and electron beam charge, which determine the overall efficiency, is important for various applications of laser-wakefield accelerators, including the development of staged high-energy accelerators.
format info:eu-repo/semantics/article
id cern-2269963
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
publisher Sci. Rep.
record_format invenio
spelling cern-22699632019-09-30T06:29:59Z doi:10.1038/srep43910 http://cds.cern.ch/record/2269963 eng Yang, X Brunetti, Enrico Reboredo Gil, David Welsh, Gregor H Li, Y.F Cipiccia, Silvia Ersfeld, Bernhard Grant, D. W Grant, P. A Islam, Muhammad Tooley, M.B Vieux, Gregory Wiggins, Sally Sheng, Zheng-Ming Jaroszynski, Dino Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question Accelerators and Storage Rings 13: Novel Acceleration Techniques (ANAC2) 13.1: Coordination and Communication Laser-wakefield accelerators are compact devices capable of delivering ultra-short electron bunches with pC-level charge and MeV-GeV energy by exploiting the ultra-high electric fields arising from the interaction of intense laser pulses with plasma. We show experimentally and through numerical simulations that a high-energy electron beam is produced simultaneously with two stable lowerenergy beams that are ejected in oblique and counter-propagating directions, typically carrying off 5–10% of the initial laser energy. A MeV, 10s nC oblique beam is ejected in a 30°–60° hollow cone, which is filled with more energetic electrons determined by the injection dynamics. A nC-level, 100s keV backward-directed beam is mainly produced at the leading edge of the plasma column. We discuss the apportioning of absorbed laser energy amongst the three beams. Knowledge of the distribution of laser energy and electron beam charge, which determine the overall efficiency, is important for various applications of laser-wakefield accelerators, including the development of staged high-energy accelerators. info:eu-repo/grantAgreement/EC/FP7/312453 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/2269963 Sci. Rep. Sci. Rep., (2017) pp. 43910 2017
spellingShingle Accelerators and Storage Rings
13: Novel Acceleration Techniques (ANAC2)
13.1: Coordination and Communication
Yang, X
Brunetti, Enrico
Reboredo Gil, David
Welsh, Gregor H
Li, Y.F
Cipiccia, Silvia
Ersfeld, Bernhard
Grant, D. W
Grant, P. A
Islam, Muhammad
Tooley, M.B
Vieux, Gregory
Wiggins, Sally
Sheng, Zheng-Ming
Jaroszynski, Dino
Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question
title Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question
title_full Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question
title_fullStr Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question
title_full_unstemmed Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question
title_short Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question
title_sort three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question
topic Accelerators and Storage Rings
13: Novel Acceleration Techniques (ANAC2)
13.1: Coordination and Communication
url https://dx.doi.org/10.1038/srep43910
http://cds.cern.ch/record/2269963
http://cds.cern.ch/record/2269963
work_keys_str_mv AT yangx threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT brunettienrico threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT reboredogildavid threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT welshgregorh threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT liyf threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT cipicciasilvia threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT ersfeldbernhard threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT grantdw threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT grantpa threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT islammuhammad threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT tooleymb threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT vieuxgregory threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT wigginssally threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT shengzhengming threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion
AT jaroszynskidino threeelectronbeamsfromalaserplasmawakefieldacceleratorandtheenergyapportioningquestion