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首页> 外文期刊>IEEE Transactions on Plasma Science >Time-and-Space Resolved Cathode Plasma Expansion Velocities in Magnetically Insulated Coaxial Diode With a Metal–Dielectric Cathode
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Time-and-Space Resolved Cathode Plasma Expansion Velocities in Magnetically Insulated Coaxial Diode With a Metal–Dielectric Cathode

机译:金属-介电阴极的磁绝缘同轴二极管中的时空分辨阴极等离子体膨胀速度

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摘要

Time-and-space resolved cathode plasma expansion velocities in magnetically insulated coaxial diodes (MICD) with edged cathodes made of bronze dielectric, bronze, and graphite have been compared through optical diagnosis. The voltage and current of the diode pulse of 260 ns are about 400 kV and 2.8 kA, respectively. The axial and radial expansion velocities of the cathode plasma were obtained through the angled lateral view by utilizing high-speed framing camera combined with the digital image processing methods. In addition, the evolution of the cathode and collector plasmas was visible firstly on the front view at the same time. The bronze-dielectric cathode not only showed low expansion velocity of about 0.5 cm/mu s but also had other superior characteristics indicated by the strong emission capability, the fast plasma formation and the uniform plasma distribution. Thereby, the metal-dielectric cathode is a good candidate for applications in a long-pulsed MICD.
机译:通过光学诊断,比较了带边阴极由青铜电介质,青铜和石墨制成的磁绝缘同轴二极管(MICD)中时空分辨的阴极等离子体膨胀速度。 260 ns的二极管脉冲的电压和电流分别约为400 kV和2.8 kA。阴极等离子体的轴向和径向膨胀速度是通过利用高速成帧相机结合数字图像处理方法通过成角度的侧视图获得的。此外,首先在正视图中首先可以看到阴极和集电极等离子体的演变。铜电介质阴极不仅显示出约0.5 cm /μs的低膨胀速度,而且还具有强大的发射能力,快速的等离子体形成和均匀的等离子体分布,显示出其他优异的特性。因此,金属电介质阴极是长脉冲MICD中应用的良好选择。

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