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Experimental Investigation of the Shock Wave in a Fast Discharge with Cylindrical Geometry

机译:圆柱几何快速放电中冲击波的实验研究

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摘要

The work is devoted to the registration and the study of the properties of cylindrical shock waves generated in the fast discharge (dI/dt ~ 10~(12) A/s) inside the ceramic tube (Al_2O_3) filled by argon at pressures of 100 and 300 Pa. The shock wave appears at the inner wall of the insulator and moves to the discharge axis with a velocity of about (3–4) × 10~6 cm/s with subsequent cumulation. The plasma behind the front is heated enough to produce radiation in the vacuum ultraviolet (VUV) region, which makes it possible to study its structure by means of a pinhole camera with a microchannel plate detector. The time resolution of the registration system was 10 ns. The analysis of VUV spectra of the plasma shows that the electron temperature behind the shock wave front is about several eV; after the moment of cumulation, its temperature increases to 20–30 eV.
机译:这项工作致力于记录和研究在100压力下充有氩气的陶瓷管(Al_2O_3)内部快速放电(dI / dt〜10〜(12)A / s)中产生的圆柱形冲击波的特性。冲击波出现在绝缘体的内壁,并以300 Pa的速度移动。放电波以大约(3-4)×10〜6 cm / s的速度向放电轴移动,并随后累积。正面后面的等离子体被加热到足以在真空紫外线(VUV)区域产生辐射,这使得可以通过带有微通道板检测器的针孔照相机研究其结构。配准系统的时间分辨率为10 ns。等离子体的VUV光谱分析表明,在冲击波前沿后面的电子温度约为几eV​​。累积后,其温度升高至20–30 eV。

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