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首页> 外文期刊>Plasma Science, IEEE Transactions on >Observation of Plasma at the Quartz Rod Inside Annular Electron Beam Produced From a Knife-Edge Cathode in a Magnetic Field
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Observation of Plasma at the Quartz Rod Inside Annular Electron Beam Produced From a Knife-Edge Cathode in a Magnetic Field

机译:磁场中由刀刃阴极产生的环形电子束内石英棒等离子体的观察

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摘要

Time-resolved light emission imaging was used to observe the plasma formation at the surface of a dielectric rod serving as a slow-wave supporting structure in an antenna-amplifier Cherenkov maser configuration. Experiments were performed using a quartz rod inserted into the hollow knife-edge cathode of a magnetically insulated foilless diode generating an annular electron beam of 0.9-1.7-kA current. The accelerating voltage pulse was delivered to the diode by a linear induction accelerator; the voltage amplitude ranged from 260 to 380 kV at the full pulse duration of ~ 200 ns. It was shown that the plasma at the rod surface is produced in the vicinity of the cathode edge plane corresponding to the location of the strong tangential electric field component. This plasma appears later than the explosive emission plasma at the cathode edge, and the intensity of light from this plasma increases, while the voltage rises. At voltages below 300 kV, the measured side-view light intensity drastically decreases, which indicates a significant decrease in the plasma density. It has been found that the surface plasma does not propagate along the rod; yet, the presence of plasma at a distance of 5-10 cm from the cathode was registered sporadically at high voltages. The electron emission from the surface plasma was observed as well.
机译:使用时间分辨发光成像来观察在天线放大器Cherenkov maser配置中用作慢波支撑结构的电介质棒表面的等离子体形成。实验是使用石英棒进行的,该石英棒插入磁绝缘的无箔二极管的空心刀口阴极中,产生0.9-1.7-kA电流的环形电子束。加速电压脉冲通过线性感应加速器传递到二极管。在〜200 ns的全脉冲持续时间内,电压幅度范围为260至380 kV。已经表明,在棒表面上的等离子体在阴极边缘平面附近产生,该阴极边缘平面对应于强切向电场分量的位置。该等离子体出现在阴极边缘的爆炸发射等离子体之后,并且当电压升高时,来自该等离子体的光强度增加。在低于300 kV的电压下,测得的侧视图光强度急剧下降,这表明等离子体密度显着下降。已经发现,表面等离子体不会沿着杆传播;因此,等离子体不会沿着杆传播。然而,在离阴极5-10 cm的距离处,等离子体在高电压下偶尔出现。还观察到来自表面等离子体的电子发射。

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