Maximizing the performance of a field emission device by profiling the emitter’s height distribution

Sergey Filippov, F. F. Dall’Agnol, Eugeni O. Popov, A. G. Kolosko, T. A. de Assis
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Abstract

Electrostatic depolarization in clusters of emitters regularly spaced and with uniform height causes the emission to concentrate on the outer corners, suppressing the relative emission contribution from center emitters. In this Letter, we performed extensive three-dimensional computer simulations to show that profiling the height distribution of the emitters significantly compensates for the electrostatic depolarization and homogenizes the emitted current per emitter. Importantly, a minimum standard deviation on the currents from individual emitters shows the route to find the ellipsoidal height profile to achieve optimized conditions. This implies a maximized macroscopic current extractable from the device since every emitter contributes approximately the same before burning out. Our findings are expected to guide developments on new field electron emission devices.
通过分析发射极的高度分布来最大化场发射器件的性能
在间距规则且高度均匀的发射体簇中,静电去极化使发射集中在外角,抑制了中心发射体的相对发射贡献。在这篇论文中,我们进行了广泛的三维计算机模拟,以表明对发射体高度分布的分析显著地补偿了静电去极化,并使每个发射体的发射电流均匀化。重要的是,来自单个发射器的电流的最小标准偏差显示了找到椭球高度剖面以实现优化条件的路线。这意味着从器件中提取的最大宏观电流,因为每个发射极在烧毁前贡献的电流大致相同。我们的发现有望指导新的场电子发射装置的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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