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Few-cycle laser wakefield acceleration on solid targets with controlled plasma scale length

机译:具有受控等离子体刻度长度的固体目标的几个循环激光韦克菲尔德加速

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摘要

We measure the emission of energetic electrons from the interaction between relativistic-intensity ultrashort laser pulses and a solid density plasma with a tunable density gradient scale length. We detect an electron beam that only appears with few-cycle pulses (<10 fs) and large plasma scale lengths (L > lambda(0)). Numerical simulations, in agreement with the experiments, reveal that these electrons are accelerated by a laser wakefield. Plasma waves are indeed resonantly excited by the few-cycle laser pulses in the near-critical density region of the plasma. Electrons are then injected by ionization into the plasma waves and accelerated to relativistic energies. In this laser wakefield acceleration regime, the plasma waves are rotated by the plasma density gradient, which results in the electrons not being emitted in the same direction as the driving laser pulse.
机译:我们测量从相对论 - 强度超短激光激光脉冲和具有可调谐密度梯度刻度长度的固体密度等离子体之间的相互作用的活性电子的发射。 我们检测到仅出现在几个循环脉冲(<10 fs)和大等离子体刻度长度(L> Lambda(0))的电子束。 与实验一致的数值模拟揭示了这些电子通过激光韦克赛加速。 等离子体波确实被等离子体的近临界密度区域中的几个循环激光脉冲共振激发。 然后通过电离进入等离子体波来注入电子并加速到相对论的能量。 在该激光唤醒加速度方案中,等离子体波被等离子体密度梯度旋转,这导致电子未在与驱动激光脉冲相同的方向上发射。

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  • 来源
    《Physics of plasmas》 |2019年第3期|共7页
  • 作者单位

    ENSTA ParisTech LOA Ecole Polytech Inst Polytech Paris CNRS 181 Chemin Huniere &

    Joncherettes F-91762 Palaiseau France;

    ENSTA ParisTech LOA Ecole Polytech Inst Polytech Paris CNRS 181 Chemin Huniere &

    Joncherettes F-91762 Palaiseau France;

    ENSTA ParisTech LOA Ecole Polytech Inst Polytech Paris CNRS 181 Chemin Huniere &

    Joncherettes F-91762 Palaiseau France;

    ENSTA ParisTech LOA Ecole Polytech Inst Polytech Paris CNRS 181 Chemin Huniere &

    Joncherettes F-91762 Palaiseau France;

    ENSTA ParisTech LOA Ecole Polytech Inst Polytech Paris CNRS 181 Chemin Huniere &

    Joncherettes F-91762 Palaiseau France;

    CEA DAM DIF F-91297 Arpajon France;

    CEA DAM DIF F-91297 Arpajon France;

    ENSTA ParisTech LOA Ecole Polytech Inst Polytech Paris CNRS 181 Chemin Huniere &

    Joncherettes F-91762 Palaiseau France;

    ENSTA ParisTech LOA Ecole Polytech Inst Polytech Paris CNRS 181 Chemin Huniere &

    Joncherettes F-91762 Palaiseau France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

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