考虑热电子产生和输运的激光等离子体相互作用模拟的二维拉格朗日代码ATLANT-HE

A. Iskakov, N. Demchenko, I. Lebo, V. Rozanov, V. Tishkin
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引用次数: 3

摘要

热电子对超短激光脉冲与固体的相互作用有重要影响。通过建立的物理和数学模型,精确地考虑了激光能量的共振吸收和临界表面上热电子的产生。在考虑强电磁场非线性影响的情况下,提出了一种模拟激光折射和轫致辐射吸收的二维射线追踪算法。热电子输运被认为是一种直线流动,通过近似电离平均状态计算的摩擦力减弱。所建立的模型与考虑非线性热输运的二维拉格朗日气体动力学程序“ATLANT”相耦合。应用所开发的程序模拟了皮秒激光双脉冲辐照铝箔。热电子的传递和加热导致了薄片爆炸。模拟和分析了在不同激光光强下,爆炸箔向增厚箔转变的过程。
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2D Lagrangian code ATLANT-HE for simulation of laser-plasma interaction with allowance for hot electron generation and transport
Hot electrons may significantly influence interaction of ultra short laser pulses with solids. Accurate consideration of resonant absorption of laser energy and hot electrons generation at a critical surface was achieved through the developed physical and mathematical models. 2D ray tracing algorithm has been developed to simulate laser beam refraction and Bremsstrahlung absorption with allowance for non-linear influence of a strong electromagnetic field. Hot electrons transport was considered as a straight-line flows weakening by a friction force calculated in the approximation of the average state of ionization. Developed models were coupled with 2D Lagrangian gas dynamic code "ATLANT" that takes into account non-linear heat transport. The developed program has been applied to simulate irradiations of Al foils by picosecond laser double pulses. Hot electrons transport and heating resulted in thin foil explosions. The transition from exploding foil regime to the ablative one with foil thickening has been simulated and analyzed at various values of laser light intensity.
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