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Isochoric heating in heterogeneous solid targets with ultrashort laser pulses

机译:超短激光脉冲对异质固体靶的等温加热

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摘要

We study ultrafast heating of thin plastic foils by intense laser irradiation theoretically using collisional two-dimensional particle-in-cell simulations. We find that the laser-generated hot electrons are confined laterally by self-generated resistive magnetic fields, heating the laser focal area beyond keV electron temperatures isochorically in a few picoseconds. Using this confinement one can excite shock waves that compress the plasma beyond solid density and achieve keV thermal plasmas before the plasma disassembles. Such shocks can be launched at material interfaces inside the target where jumps in the average ionization state and thus electron density lead to gigabar pressure. They propagate stably over picoseconds accompanied by multi-megagauss magnetic fields, and thus have a potential for various applications in high energy density physics. (c) 2007 American Institute of Physics.
机译:我们理论上使用碰撞的二维单元格内粒子模拟研究通过强激光辐照对塑料薄膜进行超快加热。我们发现,激光产生的热电子受到自生电阻磁场的横向限制,在几皮秒内将激光聚焦区域加热到keV电子温度以上。利用这种限制,可以激发冲击波,该冲击波将等离子体压缩到超过固体密度,并在等离子体分解之前获得keV热等离子体。可以在靶材内部的材料界面处以平均电离态跃迁的方式发射此类冲击,因此电子密度导致千兆巴压力。它们在皮秒内稳定地传播,并伴有数兆的高斯磁场,因此具有在高能量密度物理学中进行各种应用的潜力。 (c)2007年美国物理研究所。

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