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The experimental investigation of a charged particle flows in a submicrosecond vacuum arc at a threshold current

机译:在阈值电流下,在亚微秒真空弧中的带电粒子的实验研究

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A time dependence of in generation during a lifetime of a single cathode spot is of a great importance. To obtain such a dependence it is necessary to investigated vacuum discharge at a threshold current with small size electrode setup. Vacuum arc was feed by capacitor with restrictive resistor. After arc ignition the arc current decreases in time of 300-500ns up to threshold current. When threshold current was achieved there was only single cathode spot operating in a vacuum arc. A small discharge setup was used to obtain nanosecond time resolution on the ion flow measurement. Cathode-anode gap and anode - collector gap was established as 0.1mm. The average time of fly of ions from cathode spot to the collector can be estimated as 10ns. The estimated lifetime of cathode spot on a molybdenum cathode is 20-50ns. Thus the electrode setup built at the present experiments can be used to obtain ion generation dependence during a single cathode spot lifetime. The electron flow time dependence was obtained too. The results obtained make it possible to connect charged particle flow fluctuations with cathode spot life cycle.
机译:在单个阴极斑的寿命期间产生的时间依赖性是非常重要的。为了获得这样的依赖,有必要在具有小尺寸电极设置的阈值电流下研究真空放电。真空电弧通过具有限制性电阻的电容器供给。电弧点火后,电弧电流随时间减小300-500ns,达到阈值电流。当达到阈值电流时,只有在真空弧中操作的单个阴极点。用于在离子流量测量上获得小放电设置来获得纳秒时间分辨率。正极阳极间隙和阳极 - 集电差距建立为0.1mm。从阴极点到收集器的离子飞行的平均时间可以估计为10ns。钼阴极上的阴极点的估计寿命为20-50ns。因此,在本实验中建立的电极设置可用于在单个阴极点寿命期间获得离子产生依赖性。也获得了电子流时间依赖性。获得的结果使得可以将带电粒子流波动与阴极点寿命周期连接。

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