等离子体阳极在具有爆炸发射阴极和向大气输出电子束的电子束源中的应用

E. Abdullin, G. Basov
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引用次数: 0

摘要

本文介绍了在具有爆炸发射阴极和等离子体阳极的电子束源中产生高功率微秒电子束的实验结果,以及电子束通过箔窗输出到大气中的实验结果。光束在纵向磁场的存在下形成和传输。电源为马克思发电机,负载匹配,输出电压脉冲为矩形波形。在200-220 kV加速电压下,在电子束源中,在不点燃电极间隙电弧放电的情况下,获得了电流为2.5-3 kA、截面为100-200 cm2、持续时间为5µs的电子束。论证了电子束源在不旋转的情况下实现工作模式的可能性。在阳极后的电子源处,接收面积为74 cm2的束流收集器上释放的能量可达~ 600 ~ 700 J/脉冲。从箔外提取的光束能量用量热计记录,等于~ 250-270 J/脉冲。
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Application of a Plasma Anode in the Electron Beam Source with an Explosive Emission Cathode and Electron Beam Output into the Atmosphere
The results of experiments on the generation of high-power microsecond electron beams in an electron beam source with an explosive-emission cathode, a plasma anode, and output of an electron beam through a foil window into the atmosphere are presented. The beam is formed and transported in the presence of a longitudinal magnetic field. The power source is a Marx generator with matched loads and with a rectangular waveform of the output voltage pulse. At an accelerating voltage of 200–220 kV, in an electron beam source, the electron beams with a current of up to 2.5–3 kA, a cross section of 100–200 cm2, and a duration of 5 µs are obtained without ignition of the arc discharge in the interelectrode gap. The possibility to realize operation modes of an electron beam source without beam rotation is demonstrated. The energy released on the beam collector with a receiving surface area of 74 cm2, located in the electron source behind the anode, is up to ~ 600–700 J/pulse. The beam energy extracted outside of the foil is registered with calorimeters and equals to ~ 250–270 J/pulse.
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