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The Installation to Study the Prebreakdown Stage of a Gas Discharge by Laser Probing

机译:通过激光探测研究气体放电预爆阶段的安装

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An installation to study a pulsed gas discharge in a diode with a single metal tip by laser probing has been devised. The installation represents a generator comprised of cable sections connected to a five-channel laser-triggered switch. The synchronization of the probing laser beam with the voltage pulse is not worse than similar to 1 ns. The moment of probing is determined by the optical delay and can be varied independently within the range of 10-20 ns by changing the charging voltage of the cables. The pressure in the discharge chamber can be varied from 10-5 Torr to atmospheric pressure. Copper or molybdenum wires with a diameter of 10 mu m or greater were used as cathode pins. Three independent optical record channels with time delays of 2 and 13 ns relative to the first channel allow one to simultaneously obtain interferograms and shadow and schlieren images of the discharge gap with spatial and time resolutions of 20 mu m and 70 ps, respectively, with the exposure time of each frame being equal to a laser pulse duration of 70 ps. Using the devised installation, qualitative and quantitative data on the prebreakdown processes that occur in a tip-type diode have been obtained within a wide range of pressures.
机译:已经设计了通过激光探测的用单个金属尖端研究二极管中的脉冲气体放电的装置。该装置表示由连接到五通道激光触发开关的电缆部分组成的发电机。探测激光束的同步与电压脉冲的同步比为1 ns更差。通过光学延迟确定探测的瞬间,并且通过改变电缆的充电电压,可以在10-20ns的范围内独立地变化。放电室中的压力可以从10-5托的变化到大气压。用直径为10μm或更大的铜或钼电线用作阴极销。具有相对于第一通道的三个独立的光学记录通道,相对于第一通道的时间延迟,允许同时通过20μm和70 ps的空间和时间分辨率同时获得排出间隙的干涉图和横梁图像,其中包含20μm和70 ps的空间和时间分辨率每个帧的曝光时间等于激光脉冲持续时间为70ps。在各种压力范围内,使用了在尖端二极管中发生的预爆地进程的设计,定性和定量数据。

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