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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:改进的场发射算法,用于使用保形有限差分时域像元法对场发射器件进行建模

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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:这项工作引入了共形有限差分时域(CFDTD)单元内粒子(PIC)方法以及改进的场发射算法,可以准确,高效地研究场发射器件。 CFDTD方法基于在Vorpal代码中实现的Dey-Mittra算法或cut-cell算法。对于场发射算法,我们将福布斯发现的椭圆函数v(y)和新的拟合函数t(y) 2 用于Fowler-Nordheim(FN)方程。利用这些改进的校正因子,阴极表面电子的场发射非常接近于墨菲和古德推导的确切FN公式的预测。

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