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Efficiency Enhancement of Reflex Triode Virtual Cathode Oscillator Using the Carbon Fiber Cathode

机译:使用碳纤维阴极提高反射三极管虚拟阴极振荡器的效率

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This paper presents the investigation on the reflex triode (RT) virtual cathode oscillator (vircator) using a carbon fiber cathode. Experimental results show that the carbon fiber cathode can obviously improve the electron beam quality and dramatically enhance the beam-to-microwave efficiency of the RT vircator. It was found that the beam-to-microwave efficiency increased from about 4%–6% in the case of the stainless steel cathode to over 10% in the case of the carbon fiber cathode. In order to understand the phenomenon of efficiency enhancement, experimental studies on the plasma formation on the surface of carbon fiber cathode were also done using the facility of the RT vircator. Physically, the electron emission of the carbon fiber cathode is attributed to the plasma formation due to the surface flashover along the whole surface of carbon fiber. This mechanism is different from the conventional explosive emission of metal cathode. Experimental results clearly show that the electrons emitted not only from the top of the carbon fiber but also from the side surface. Particularly, the plasma is more uniform for carbon fiber cathode due to the side surface flashover of the carbon fibers, and plasma expansion velocity is slower than that for conventional metal cathode, which significantly improves the electron beam quality of the carbon fiber cathode.
机译:本文介绍了使用碳纤维阴极的反射三极管(RT)虚拟阴极振荡器(vircator)的研究。实验结果表明,碳纤维阴极可以显着改善电子束质量,并显着提高RT振荡器的束对微波效率。结果发现,束流对微波的效率从不锈钢阴极的4%–6%提高到碳纤维阴极的10%以上。为了理解效率提高的现象,还使用RT振荡器的装置对碳纤维阴极表面的等离子体形成进行了实验研究。在物理上,由于沿着碳纤维整个表面的表面飞弧,碳纤维阴极的电子发射归因于等离子体的形成。该机制不同于常规的金属阴极爆炸性发射。实验结果清楚地表明,电子不仅从碳纤维的顶部发出,而且从侧面发出。特别地,由于碳纤维的侧面飞弧,等离子体对于碳纤维阴极更均匀,并且等离子体膨胀速度比常规金属阴极的等离子体膨胀速度慢,这显着改善了碳纤维阴极的电子束质量。

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