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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/105564


    Title: Particle-in-cell simulations of quasi-phase matched direct laser electron acceleration in density-modulated plasma waveguides
    Authors: 劉耀澧;Lin, M.-W.;Liu, Y.-L.;Chen, S.-H.;Jovanovic, I.
    Contributors: 理學院物理學系
    Keywords: Collimation;Computer simulation;Defocusing;Density;Electron acceleration;Emittance;Lasers;Lorentz force;Particle in cell technique;Phase matching;Plasma;Plasma physics;Pulse duration;Simulation;Waveguides
    Date: 2014-09-01
    Issue Date: 2026-04-23 12:37:05 (UTC+8)
    Publisher: Melville: American Institute of Physics
    Abstract: 摘要: Quasi-phase matched direct laser acceleration (DLA) of electrons can be realized with guided, radially polarized laser pulses in density-modulated plasma waveguides. A particle-in-cell model has been developed to describe the interactions among the laser field, injected electrons, and the background plasma in the DLA process. Simulations have been conducted to study the scheme in which seed electron bunches with moderate energies are injected into a plasma waveguide and the DLA is performed by use of relatively low-power (0.5–2 TW) laser pulses. Selected bunch injection delays with respect to the laser pulse, bunch lengths, and bunch transverse sizes have been studied in a series of simulations of DLA in a plasma waveguide. The results show that the injection delay is important for controlling the final transverse properties of short electron bunches, but it also affects the final energy gain. With a long injected bunch length, the enhanced ion-focusing force helps to collimate the electrons and a relatively small final emittance can be obtained. DLA efficiency is reduced when a bunch with a greater transverse size is injected; in addition, micro-bunching is clearly observed due to the focusing and defocusing of electrons by the radially directed Lorentz force. DLA should be performed with a moderate laser power to maintain favorable bunch transverse properties, while the waveguide length can be extended to obtain a higher maximum energy gain, with the commensurate increase of laser pulse duration and energy.
    出版者: Melville: American Institute of Physics
    出版日期: 2014-09-01
    出處: Physics of plasmas, 2014-09, Vol.21 (9)
    資源來源: AIP Publishing
    版權: 2014 AIP Publishing LLC.
    識別號: ISSN: 1070-664X
    識別號: ISSN: 1527-2419
    識別號: ISSN: 1089-7674
    識別號: EISSN: 1089-7674
    識別號: DOI: 10.1063/1.4896245
    Appears in Collections:[Department of Physics] journal & Dissertation

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