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Space and time resolved observations of plasma formations and X-ray emission in a Vacuum Spark discharge

机译:真空火花放电中等离子体形成和X射线发射的时空分辨观察

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Summary form only given. The Vacuum Spark is a small scale device which allows the achievement of plasma conditions leading to radiative collapse on a nanosecond timescale. We report on the plasma formations in a Vacuum Spark operated in the hybrid mode when driven from a 1.5 Ohm coaxial pulse forming line with a maximum current of 140 kA in a 120 ns pulse. A comparatively low power Nd:YAG laser pulse incident onto the cathode initiates the discharge. The evolution of the titanium plasma electron density and temperature is followed both in the visible and the soft X-ray part of the spectrum. The plasma electron density dynamics are followed using a novel micro holographic interferometric technique, based on the Mach-Zehnder interferometer, permitting a spatial resolution better than 20 /spl mu/m. This technique is compared with simultaneous results from image plane interferometric holograms. The probing beam is a 1 ns frequency doubled Nd:YAG laser.
机译:仅提供摘要表格。真空火花是一种小型设备,可以实现等离子条件,从而导致纳秒级的辐射崩溃。我们报告了从1.5欧姆同轴脉冲形成线以120 ns脉冲的最大电流驱动时,在以混合模式运行的真空火花中的等离子体形成情况。入射到阴极上的相对较低功率的Nd:YAG激光脉冲会启动放电。钛等离子体电子密度和温度的变化在光谱的可见光和软X射线部分均遵循。使用基于Mach-Zehnder干涉仪的新型微全息干涉技术跟踪等离子体电子密度的动态变化,可以实现优于20 / spl mu / m的空间分辨率。将该技术与图像平面干涉全息图的同时结果进行了比较。探测光束是1 ns倍频Nd:YAG激光器。

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