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Al plasma jet formation via ion stream compression by surrounding low-Z plasma envelope

机译:通过周围的低Z等离子体封套通过离子流压缩形成Al等离子体喷射

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摘要

In our earlier papers it was demonstrated that the plasma pressure decreases with the growing atomic number of the target material. In this context a question arose about the possibility to collimate the Al plasma outflow by using the plastic plasma as a compressor. For that purpose a plastic target with an Al cylindrical insert of 400 μm in diameter was used. The experiment was carried out at the PALS laser facility. The laser provided a 250 ps (FWHM) pulse with the energy of 130 J at the third harmonic frequency (λ3 = 0.438 μm). The focal spot diameters (ΦL) 800, 1000, and 1200 μm ensured predominance of the plastic plasma, its transversal extension being large enough for the effective Al plasma compression. To study the Al plasma stream propagation and its interaction with the plastic plasma, a 3-frame interferometric system and 4-frame x-ray camera were used. The information on distribution of electron temperature in the outflowing Al plasma was provided by x-ray spectroscopy. The experimental results reported in the paper are discussed by virtue of a simple theoretical analysis.
机译:在我们之前的论文中,证明了等离子体压力随着目标材料的不断增长的原子序数降低。在这种情况下,一个问题是通过使用塑料等离子体作为压缩机来加密Al等离子体流出的可能性。为此目的,使用具有直径为400μm的Al圆柱形插入物的塑料靶。实验在PALS激光设施进行。激光器提供了250ps(fwhm)脉冲,其能量为130 j,在第三谐波频率(λ3=0.438μm)。焦点直径(φ1)800,000和1200μm确保塑料等离子体的优势,其横向延伸大足够大,以实现有效的Al等离子体压缩。为了研究Al等离子物流传播及其与塑料等离子体的相互作用,使用3帧干涉系统和4帧X射线照相机。通过X射线光谱法提供有关过量的Al等离子体中电子温度分布的信息。本文报告的实验结果是通过简单的理论分析讨论的。

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