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Radiation-Reaction Trapping of Electrons in Extreme Laser Fields

A radiation-reaction trapping (RRT) of electrons is revealed in the near-QED regime of laser-plasma interaction. Electrons quivering in laser pulse experience radiation reaction (RR) recoil force by radiating photons. When the laser field reaches the threshold, the RR force becomes significant enoug...

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Detalles Bibliográficos
Autores principales: Ji, L L, Pukhov, A, Kostyukov, I Yu, Shen, B F, Akli, K
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: Physical Review Letters 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1702259
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author Ji, L L
Pukhov, A
Kostyukov, I Yu
Shen, B F
Akli, K
author_facet Ji, L L
Pukhov, A
Kostyukov, I Yu
Shen, B F
Akli, K
author_sort Ji, L L
collection CERN
description A radiation-reaction trapping (RRT) of electrons is revealed in the near-QED regime of laser-plasma interaction. Electrons quivering in laser pulse experience radiation reaction (RR) recoil force by radiating photons. When the laser field reaches the threshold, the RR force becomes significant enough to compensate for the expelling laser ponderomotive force. Then electrons are trapped inside the laser pulse instead of being scattered off transversely and form a dense plasma bunch. The mechanism is demonstrated both by full three-dimensional particle-in-cell simulations using the QED photonic approach and numerical test-particle modeling based on the classical Landau-Lifshitz formula of RR force. Furthermore, the proposed analysis shows that the threshold of laser field amplitude for RRT is approximately the cubic root of laser wavelength over classical electron radius. Because of the pinching effect of the trapped electron bunch, the required laser intensity for RRT can be further reduced.
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spelling cern-17022592019-09-30T06:29:59Z http://cds.cern.ch/record/1702259 eng Ji, L L Pukhov, A Kostyukov, I Yu Shen, B F Akli, K Radiation-Reaction Trapping of Electrons in Extreme Laser Fields Accelerators and Storage Rings 13: Novel Acceleration Techniques (ANAC2) 13.1: Coordination and Communication A radiation-reaction trapping (RRT) of electrons is revealed in the near-QED regime of laser-plasma interaction. Electrons quivering in laser pulse experience radiation reaction (RR) recoil force by radiating photons. When the laser field reaches the threshold, the RR force becomes significant enough to compensate for the expelling laser ponderomotive force. Then electrons are trapped inside the laser pulse instead of being scattered off transversely and form a dense plasma bunch. The mechanism is demonstrated both by full three-dimensional particle-in-cell simulations using the QED photonic approach and numerical test-particle modeling based on the classical Landau-Lifshitz formula of RR force. Furthermore, the proposed analysis shows that the threshold of laser field amplitude for RRT is approximately the cubic root of laser wavelength over classical electron radius. Because of the pinching effect of the trapped electron bunch, the required laser intensity for RRT can be further reduced. info:eu-repo/grantAgreement/EC/FP7/312453 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1702259 Physical Review Letters Physical Review Letters, () pp. 2014
spellingShingle Accelerators and Storage Rings
13: Novel Acceleration Techniques (ANAC2)
13.1: Coordination and Communication
Ji, L L
Pukhov, A
Kostyukov, I Yu
Shen, B F
Akli, K
Radiation-Reaction Trapping of Electrons in Extreme Laser Fields
title Radiation-Reaction Trapping of Electrons in Extreme Laser Fields
title_full Radiation-Reaction Trapping of Electrons in Extreme Laser Fields
title_fullStr Radiation-Reaction Trapping of Electrons in Extreme Laser Fields
title_full_unstemmed Radiation-Reaction Trapping of Electrons in Extreme Laser Fields
title_short Radiation-Reaction Trapping of Electrons in Extreme Laser Fields
title_sort radiation-reaction trapping of electrons in extreme laser fields
topic Accelerators and Storage Rings
13: Novel Acceleration Techniques (ANAC2)
13.1: Coordination and Communication
url http://cds.cern.ch/record/1702259
http://cds.cern.ch/record/1702259
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AT pukhova radiationreactiontrappingofelectronsinextremelaserfields
AT kostyukoviyu radiationreactiontrappingofelectronsinextremelaserfields
AT shenbf radiationreactiontrappingofelectronsinextremelaserfields
AT aklik radiationreactiontrappingofelectronsinextremelaserfields