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首页> 外文期刊>Plasma Science, IEEE Transactions on >Operation of a Microwave Pulse Compressor With a Laser-Triggered Plasma Switch at Different Laser Beam Directions
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Operation of a Microwave Pulse Compressor With a Laser-Triggered Plasma Switch at Different Laser Beam Directions

机译:带有激光触发等离子体开关的微波脉冲压缩器在不同激光束方向上的操作

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A resonant microwave pulse compressor with laser triggering of the plasma discharge in its switch was studied for the influence of the unfocused laser beam direction with respect to the RF electric field. The compressor was realized as a rectangular waveguide-based cavity connected to an -plane waveguide tee with a shorted side arm filled with pressurized helium and pumped by a conventional pulsed -band magnetron. It was found that neither the direction, nor the intensity of the laser beam significantly affect the compressor output pulse peak power and waveform. Meantime, the delay between the moment of plasma discharge initiation and the appearance of the microwave output is shorter and the time jitter for this delay is smaller if the laser beam is directed along the RF electric field. The same effect was observed when increasing the intensity of the laser beam. Time-resolved optical emission spectroscopy was used to evaluate the plasma density, and numerical simulations of the RF energy release from the system with the appearance of plasma showed a good agreement with the experimentally obtained characteristics of the plasma and microwave output pulse.
机译:研究了谐振微波脉冲压缩机在其开关中具有激光触发等离子体放电的特性,以研究未聚焦的激光束方向对RF电场的影响。该压缩机被实现为基于矩形波导的腔体,该腔体通过短侧臂连接到平面波导T形管,该短臂填充有加压的氦气并由常规脉冲带磁控管泵送。已经发现,激光束的方向和强度都不会显着影响压缩机输出脉冲的峰值功率和波形。同时,如果激光束沿射频电场定向,则等离子体放电开始时刻与微波输出出现之间的延迟时间较短,并且该延迟时间的抖动较小。当增加激光束的强度时,观察到相同的效果。使用时间分辨光发射光谱法评估等离子体密度,并且随着等离子体的出现而从系统释放射频能量的数值模拟表明,该等离子体与通过实验获得的等离子体和微波输出脉冲的特性非常吻合。

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