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Design Approach for a Miniaturized Pseudospark-Based High-Current-Density Sheet Electron Beam Source

机译:基于微型伪火花的高电流密度片状电子束源的设计方法

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In this article, the design approach for a miniaturized high-current-density sheet electron beam (SEB) source has been reported. A study through simulation using COMSOL Multiphysics has been carried out to analyze the role of geometrical parameters of the hollow cathode in miniaturized SEB generation. These geometrical parameters play a very important role in defining the discharge inside the hollowcathode geometry and subsequent beam generation througha rectangularaperture. The hollow cathode diameter "D", the length of the hollow cathode "L", and the aspect ratio of the sheet beam defined by the aperture size in front of the hollow cathode region have been optimized for the generation of a SEB. The ratio of the length to the width of the rectangular aperture defines the aspect ratio of the SEB. It has been found that the beam aspect ratio plays an important role in the penetration of the accelerating field inside the hollow cathode geometry, which affects the transient behavior of the discharge. The hollow cathode dimensions have been optimized for the applied gap voltage varying between 15 and 25 kV, while the beam aspect ratio has been analyzed for the range between 5: 1 and 12: 1 keeping the fill factor constant.
机译:在本文中,已经报道了一种小型化的高电流密度片状电子束(SEB)源的设计方法。通过使用COMSOL Multiphysics模拟进行的研究已经进行了分析,以分析空心阴极的几何参数在SEB小型化中的作用。这些几何参数在定义空心阴极几何形状内部的放电以及随后通过矩形孔的光束生成中起着非常重要的作用。中空阴极直径“ D”,中空阴极“ L”的长度以及由中空阴极区域前面的孔径确定的薄板束的长宽比已被优化用于SEB的产生。矩形孔的长度与宽度之比定义了SEB的纵横比。已经发现,束长宽比在空心阴极几何形状内部的加速场的穿透中起重要作用,这会影响放电的瞬态行为。中空阴极的尺寸已针对15到25 kV之间变化的施加间隙电压进行了优化,同时分析了电子束的宽高比,使填充系数保持恒定,范围为5:1至12:1。

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