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Experimental study of laser penetration in overdense plasmas at relativistic intensities. II: Explosion of thin foils by laser driven fast electrons

机译:相对论强度下超密度等离子体中激光穿透的实验研究。 II:激光驱动的快速电子爆炸薄片

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Propagation of a high-contrast frequency-doubled subpicosecond (300 fs) relativistic (I lambda(2) up to 5x10(18) W.cm(-2).mu m(2)) laser pulse through thin and initially solid foils is studied. Transmission values up to 10% are measured through targets with initial near solid densities. The strong intensity threshold observed for the transmitted energy is correlated with clear modifications of the transmitted and reflected spectra, electron generation, and beam imaging. Two-dimensional Cartesian particle-in-cell (PIC) simulations that qualitatively reproduce the experimental results suggest specific rapid heating of the thin targets by fast electrons, plasma expansion, and density decrease to relativistically transmissive conditions during the pulse. (C) 1999 American Institute of Physics. [S1070-664X(99)01006-X]. [References: 43]
机译:通过薄的初始箔片传播的高对比度倍频皮秒(300 fs)相对论(I lambda(2)高达5x10(18)W.cm(-2).mu m(2))激光脉冲研究。通过初始密度接近实心的目标测量的透射率值最高可达10%。观察到的透射能量的强强度阈值与透射光谱和反射光谱,电子生成和电子束成像的明确修改相关。定性地再现实验结果的二维笛卡尔质点(PIC)模拟表明,在脉冲过程中,由于快速电子,等离子体膨胀和密度降低到相对论透射条件,薄靶的特定快速加热。 (C)1999美国物理研究所。 [S1070-664X(99)01006-X]。 [参考:43]

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