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Improved Field Emission Algorithms for Modeling Field Emission Devices Using a Conformal Finite-Difference Time-Domain Particle-In-Cell Method

机译:利用保形有限差分时域粒子粒子方法改进用于建模场发射装置的现场发射算法

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This work introduces a conformal finite difference time domain (CFDTD) particle-in-cell (PIC) method with an improved field emission algorithm to accurately and efficiently study field emission devices. The CFDTD method is based on the Dey-Mittra algorithm or cut-cell algorithm, as implemented in the Vorpal code. For the field emission algorithm, we employ the elliptic function v(y) found by Forbes and a new fitting function t(y)~2 for the Fowler-Nordheim (FN) equation. With these improved correction factors, field emission of electrons from a cathode surface is much closer to the prediction of the exact FN formula derived by Murphy and Good.
机译:该工作引入了一种具有改进的场发射算法的共形有限差分时域(CFDTD)粒子电池(PIC)方法,以准确且有效地研究现场发射装置。 CFDTD方法基于Dey-Mittra算法或剪切单元算法,如在Vorpal代码中实现。对于现场发射算法,我们采用FORBES找到的椭圆函数V(Y)和用于FOWLER-NONDHEIM(FN)方程的新装配函数T(Y)〜2。利用这些改进的校正因子,来自阴极表面的电子的现场排放更接近墨菲和良好的精确FN配方的预测。

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