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首页> 外文期刊>IEEE Transactions on Electron Devices >Impact of Irregular Electrode Apertures in Multigap Pseudospark Discharge Geometries for the Generation of High Density and Energetic Electron Beams
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Impact of Irregular Electrode Apertures in Multigap Pseudospark Discharge Geometries for the Generation of High Density and Energetic Electron Beams

机译:不抗体孔在多粒伪气柱排出几何形状的影响,用于产生高密度和能量电子束

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摘要

In this article, a multigap pseudospark (PS) discharge-based plasma cathode electron (PD-PCE) source is considered for the generation of high density and energetic pulsed electron beams using electrostatic 2-D kinetic particle-in-cell (PIC) simulation code OOPIC Pro. The characteristics of the generated electron beams are very much dependent on the geometrical and operating parameters of PD-PCE source. The size, uniformities, and irregularities of electrode apertures play a significant role on the generation of high density and energetic electron beams. Investigation has been carried out to analyze the effect of the irregular electrode apertures in PD-PCE source for the generation of electron beams. The combinations of irregularities considered in the diameter of electrode apertures are 2, 4, 6, and 8 mm, mostly used for the development of PD-PCE sources. It has been observed that the aperture size of first electrode decides the delay in breakdown of first gap at constant operating conditions. The delay primarily depends on the penetrating behavior of equipotential lines which leads the successive breakdowns in the remaining gaps of multigap PD- PCE source. The latter electrodes of multigap geometry are responsible for guiding the size of electron beams. Dips in the electron beam currents have been observed during its rise, which are dependent on the sequence of irregular electrode apertures and operating conditions. The gas pressure and electrode apertures control the voltage falls in gaps and rise of electron beam current. The study would support the design and the development of PD-PCE sources suitable for extreme ultraviolet (EUV)/soft X-ray, microwave, and surface modification applications.
机译:在本文中,考虑使用静电2-D动力学粒子 - 细胞(PIC)仿真,考虑使用基于多脂柱(PS)放电的等离子体阴极电子(PD-PCE)源代来产生高密度和能量脉冲电子束代码oopic pro。所产生的电子束的特性非常依赖于PD-PCE源的几何和操作参数。电极孔的尺寸,均匀性和不规则性在高密度和能量电子束的产生上起着重要作用。已经进行了研究以分析不规则电极孔在PD-PCE源中的效果,以产生电子束。在电极孔径的直径中考虑的不规则性的组合为2,4,6和8mm,主要用于PD-PCE源的发展。已经观察到,第一电极的孔径尺寸决定在恒定操作条件下的第一间隙突破。延迟主要取决于等电位线的穿透行为,这引发了多脂PDCE源的剩余间隙中的连续故障。多粒几何形状的后一种电极负责引导电子束的尺寸。在其上升期间已经观察到电子束电流中的倾斜,这取决于不规则电极孔和操作条件的序列。气体压力和电极孔控制电压下降并升高电子束电流。该研究将支持适用于极端紫外(EUV)/软X射线,微波和表面改性应用的PD-PCE源的设计和开发。

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