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Current density distributions of electron beams produced by CFSE diodes

机译:CFSE二极管产生的电子束的电流密度分布

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The crossed-field secondary emission (CFSE) diode is a compact, simple and cheap source of tubular electron beams. It is of a magnetron type with smooth cylindrical electrodes and an axial applied magnetic field. The physical mechanism of current production is a self-sustained secondary electron emission which thus effectively makes the CFSE diode a cold electron source. The electron beam from the CFSE diode could be generated in a wide range of output currents from /spl sim/10 A to several hundreds of amperes. The highest current obtained at the present stage of research is /spl sim/240 A generated with the diode of /spl sim/60 mm cathode diameter at /spl sim/20 kV of applied diode voltage. Our previous study revealed that the thickness of the electron beam wall is /spl sim/1 mm as evident from imprints of the electron beam on metal targets in the beam collector region. Such a small beam thickness combined with an extremely high temporal stability is of great importance for various applications including primarily devices for microwave generation. It is therefore an important task to investigate in detail the radial current density distribution of the electron beam produced by the CFSE electron source. Uniformity of the electron beam around a cathode circumference is also an important characteristic from the viewpoint of potential applications. The investigation on radial and azimuthal current density distributions of the CFSE output electron beam is a major goal of the research described in this paper.
机译:交叉场二次发射(CFSE)二极管是紧凑,简单且廉价的管状电子束源。它是具有光滑圆柱形电极和轴向施加磁场的磁控管类型。电流产生的物理机制是自我维持的二次电子发射,因此有效地使CFSE二极管成为冷电子源。来自CFSE二极管的电子束可以在从/ spl sim / 10 A到数百安培的宽范围输出电流中产生。在当前研究阶段获得的最高电流是/ spl sim / 240 A,它是由/ spl sim / 60毫米阴极直径的二极管在施加的/ spl sim / 20 kV二极管电压下产生的。我们先前的研究表明,电子束壁的厚度为/ spl sim / 1 mm,从电子束在电子束收集器区域中的金属靶上的烙印可以明显看出。如此小的光束厚度与极高的时间稳定性相结合,对于各种应用(包括主要用于产生微波的设备)非常重要。因此,详细研究由CFSE电子源产生的电子束的径向电流密度分布是一项重要的任务。从电位应用的观点来看,围绕阴极圆周的电子束的均匀性也是重要的特性。 CFSE输出电子束的径向和方位电流密度分布的研究是本文所述研究的主要目标。

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