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Experimental Study of the Accelerator of a Pulsed High-Current Radially Converging Electron Beam

机译:脉冲大电流径向会聚电子束加速器的实验研究

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摘要

A new cylindrical electron accelerator with a revised design (1-m long cathode, new plasma cathode concept) was built and a first experimental study of its operation was performed. The cathode plasma is generated by uniformly distributed vacuum-arc discharge gaps and its expansion is limited by a stabilizing grid. From the timescale of cathode plasma formation, a plasma temperature of about 40 eV is estimated. Electrons are emitted from the cylindrical cathode and radially accelerated toward the tube anode located along the accelerator axis. Due to the small anode radius of only 0.5 cm and the rather large azimuthal velocities of the electrons at emission, about 20% of the beam electrons miss the anode and circulate in the accelerator volume. This process significantly increases the current to the control grid of the triode-type accelerator at the expense of a reduced current delivered to the anode. The effect of circulating electrons is much less pronounced for an anode with radius 1 cm.
机译:建造了具有改进设计的新型圆柱形电子加速器(长1米的阴极,新的等离子阴极概念),并对其运行进行了首次实验研究。阴极等离子体是由均匀分布的真空电弧放电间隙产生的,其膨胀受到稳定栅的限制。从阴极等离子体形成的时间尺度,估计约40eV的等离子体温度。电子从圆柱状阴极发射,并沿加速器轴径向朝着管阳极径向加速。由于只有0.5 cm的小阳极半径和发射时电子的相当大的方位角速度,大约20%的电子束电子会错过阳极并在加速器中循环。该过程显着增加了流向三极管型加速器的控制栅极的电流,但代价是传递到阳极的电流减少了。对于半径为1 cm的阳极,循环电子的影响要小得多。

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