物理
领域(数学)
本地字段
场电子发射
电场
曲面(拓扑)
统计物理学
维数之咒
比例(比率)
电流(流体)
比例因子(宇宙学)
计算物理学
凝聚态物理
电子
几何学
量子力学
机器学习
空间的度量展开
暗能量
计算机科学
纯数学
宇宙学
热力学
数学
作者
Yang Feng,John Verboncoeur
摘要
The local field enhancement factor β is often introduced in the Fowler–Nordheim equation to represent the geometrical effects at the surface of the cathode, where β(s)=En(s)∕E0 for macroscopic applied field E0. Local variation of β determines the local normal surface electric field, En(s), resulting in local dependence of injection current by the Fowler–Nordheim law. In computational models, it is impractical to determine the time-dependent local surface field each time step on a microscopic space scale. Effective β is introduced in this paper which allows us to study the emission properties at a macroscopic scale. Microscopic (subgrid) local effective β is calculated only at the initial time step, and then the effective β can be recomputed for different surface electrical field through this model. The model allows reduction of dimensionality as well as the ability to include subgrid effects. The model is demonstrated on fundamental cases and compared to a calculation with a mesh fine enough to resolve the geometric features.
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