Thin foil acceleration by the pressure of laser-produced plasma of porous matter

J. Limpouch, S. Gus'kov, A. I. Gromov, M. Kalal, A. Kasperczuk, V. N. Kondrashov, E. Krouský, B. Králiková, K. Mašek, T. Pisarczyk, M. Pfeifer, K. Rohlena, V. Rozanov, J. Skála, J. Ullschmied
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Abstract

Interactions of PALS iodine laser beam with low density porous targets and porous targets with Al foil attached to the rear side were studied using multi-frame interferometry and shadowgraphy. Electron density profiles at the front and the rear side of the targets were reconstructed from interferograms. Velocities of Al-foils accelerated by the pressure of the heated porous material were established from shadowgrams. A good symmetry and absence of local perturbations were observed both in the rear side plasmas of porous targets and in the shape of the accelerated Al-foils. Measured rear side velocities are in a good agreement with the presented theory of laser interactions with porous materials.
利用激光产生的多孔物质等离子体的压力来加速薄箔
采用多帧干涉和投影技术研究了PALS碘激光束与低密度多孔目标和背面附着铝箔多孔目标的相互作用。利用干涉图重建了目标前后两侧的电子密度分布。利用阴影图建立了铝箔在加热多孔材料压力作用下的加速速度。在多孔靶的后侧等离子体和加速铝箔的形状中均观察到良好的对称性和无局部扰动。测量到的后侧速度与提出的激光与多孔材料相互作用理论很好地吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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