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Comparison of CsI coated carbon velvet and aluminum cathodes operated at current density on the order of 300 A/cm2

机译:CSI涂覆的碳素天鹅绒和铝阴极以300a / cm 2 的电流密度运行的铝阴极

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Many high power microwave devices use explosive or flashover electron emission cathodes in order to generate the electron beam and thus drive the device. These diodes are simple to operate, requiring no heater or other external systems, and are capable of generating beam currents of several kA at accelerating voltages on the order of 100s of kV. However, they generally suffer from non-uniform emission, anode heating, out-gassing, and pulse shortening due to anode and cathode plasma expansion. The ability to rep-rate such a diode is generally limited by anode heating and out-gassing which are both affected by beam uniformity. Two diodes are compared in this work. One uses a machined aluminum cathode, which is made from solid aluminum with grooves milled onto the surface. The other diode utilizes a carbon velvet cathode which is CVD coated with CsI. Time integrated scintillator images of the electron beam at the anode were taken for both the carbon velvet and aluminum cathodes. Additionally, time resolved images of the emission centers were taken for the carbon velvet cathodes. Data sets of over 1000 shots were taken with each cathode and shot to shot variation in the peak “turn-on” electric field are compared. The lifetime of the aluminum cathode was exceeded before 1000 shots, whereas the carbon velvet cathode showed no degradation in operation.
机译:许多高功率微波器件使用爆炸或闪络电子发射阴极,以产生电子束并因此驱动该装置。这些二极管操作简单,不需要没有加热器或其他外部系统,并且能够在100S的100S kV的加速电压下产生几个Ka的光束电流。然而,它们通常由于阳极和阴极等离子体膨胀而遭受非均匀的发射,阳极加热,外脉冲和脉冲缩短。代价率这种二极管的能力通常受到阳极加热和渗出的限制,这两者都受光束均匀性的影响。在这项工作中比较了两个二极管。一种使用加工的铝阴极,该铝阴极由固体铝制成,与槽铣削到表面上。另一二极管利用碳素天鹅绒阴极,该阴极是CVD涂有CSI。为碳天鹅绒和铝阴极进行阳极处的电子束的时间集成闪烁图像。另外,为碳素天鹅绒阴极进行排放中心的时间分辨图像。每个阴极都采取超过1000次拍摄的数据集,并拍摄峰值&#x201c中的射击变化;开启”比较电场。在1000次射击之前超过铝阴极的寿命,而碳天鹅绒阴极在操作中没有降解。

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