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Magnetohydrodynamics of laser-produced high-energy-density plasma in a strong external magnetic field

机译:激光产生的高能密度等离子体在强外部磁场中的磁力流体动力学

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摘要

Recent progress in the generation in the laboratory of a strong (>100-T) magnetic field enables us to investigate experimentally unexplored magnetohydrodynamics phenomena of a high-energy-density plasma, which an external magnetic field of 200-300 T notably affects due to anisotropic thermal conduction, even when the magnetic field pressure is much lower than the plasma pressure. The external magnetic field reduces electron thermal conduction across the external magnetic field lines because the Larmor radius of the thermal electrons in the external magnetic field is much shorter than the mean free path of the thermal electrons. The velocity of a thin polystyrene foil driven by intense laser beams in the strong external magnetic field is faster than that in the absence of the external magnetic field. Growth of sinusoidal corrugation imposed initially on the laser-driven polystyrene surface is enhanced by the external magnetic field because the plasma pressure distribution becomes nonuniform due to the external magnetic-field structure modulated by the perturbed plasma flow ablated from the corrugated surface.
机译:在强(> 100-T)磁场的实验室中的生成中的最新进展使我们能够调查高能密度等离子体的实验未探测的磁力流体动力学现象,其外部磁场为200-300 t的显着影响各向异性热传导,即使磁场压力远低于等离子体压力。外部磁场减少了外部磁场线的电子热导通,因为外部磁场中的热电子的拉马力半径远短于热电子的平均自由路径。由强外部磁场中的强烈激光束驱动的薄聚苯乙烯箔的速度比在不存在外部磁场的情况下快。外部磁场增强了最初在激光驱动的聚苯乙烯表面上施加的正弦波纹的生长,因为由于由从波纹表面消融的扰动等离子体流量调制的外部磁场结构,等离子体压力分布变得不均匀。

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  • 来源
    《PHYSICAL REVIEW E》 |2017年第6期|053204.1-053204.6|共6页
  • 作者单位

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    CELIA University of Bordeaux 351 Cours de la Liberation 33405 Talence France;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Interdisciplinary Graduate School of Engineering Science Kyushu University 6-1 Kasuga-kouen Kasuga Fukuoka 816-8580 Japan;

    Department of Physics National Central University No. 300 Jhongda Road Jhongli Taoyuan 320 Taiwan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

    Institute of Laser Engineering Osaka University 2-6 Yamada-oka Suita Osaka 565-0871 Japan;

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