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Pulse width of a reflex triode virtual cathode oscillator

机译:反射三极管虚拟阴极振荡器的脉冲宽度

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Experiments were carried out to generate intense relativistic electron beams and High Power Microwaves (HPM) with reflex triode geometry from 1 kJ pulse power system. The 1 kJ pulse power system is a Marx generator based repetitive system capable of operation at 10 Hz. The typical electron beam parameters were 200 kV, 4 kA, and 300 ns, with a current density of a few hundreds of amperes per square centimeter. The cathode used was planar graphite and the anode is a woven stainless steel mesh of 70% transparency. Beam generation studies were conducted for diode gaps from 8-20 mm. Cathode plasma expansion velocity has been calculated from the time dependent diode perveance and was found to be 1.7 cm/μs. It was also found that the microwave (base not FWHM) pulse width increased from ~ 150 ns to ~ 700 ns as the diode gap is increased from 8 mm to 20 mm. A large pulse width is obtained because of longer time of plasma motion across the gap and reduced rate of the effective gap change. Measured frequency was 2.2 GHz at 15 mm anode-cathode gap and decreases with the increased gap.
机译:进行了实验,以从1 kJ脉冲功率系统产生具有反射三极管几何形状的强相对论电子束和高功率微波(HPM)。 1 kJ脉冲功率系统是基于Marx发生器的重复系统,能够以10 Hz的频率运行。典型的电子束参数为200 kV,4 kA和300 ns,电流密度为每平方厘米几百安培。所用阴极为平面石墨,阳极为透明度为70%的不锈钢编织网。对8-20毫米的二极管间隙进行了光束产生研究。阴极等离子体的膨胀速度已根据与时间相关的二极管导通率进行了计算,结果为1.7 cm /μs。还发现,随着二极管间隙从8 mm增加到20 mm,微波(基频不是FWHM)脉冲宽度从〜150 ns增加到〜700 ns。由于等离子在间隙中运动的时间较长,并且有效间隙的变化率降低,因此获得了较大的脉冲宽度。在15 mm的阳极-阴极间隙处测得的频率为2.2 GHz,并随着间隙的增加而降低。

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