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Correction factors for field emission from a nanoscopic emitter based on ab initio calculation of the electron eigenstates

机译:基于电子本征态从头算的纳米发射体的场发射校正因子

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We have recently calculated the quantized eigenstates of an electron emitter whose form is that of a paraboloid with nanoscopic radius of curvature $mathrm{R}$ at the apex. We have used these eigenstates to calculate the emitted current from such a nanoscale emitter. We find that the corresponding Fowler-Nordheim (FN) curves are strongly nonlinear deviating from the well-known behavior predicted by the traditional FN theory. To make our theory easily accessible, we present factors that rectify the original FN equation for the emitted current as a function of known $mathrm{R}$., compensating for the quantum confinement effects of high apical curvature. These practical-interest correction factors, however, are derived from exact analytical calculations for electron quantum states inside such a nanoscale emitter tip.
机译:我们最近已经计算出电子发射器的量化本征态,该电子发射器的形式是具有纳米级曲率半径的抛物面 $ \ mathrm {R} $ 在顶点。我们已经使用这些本征态来计算这种纳米级发射器的发射电流。我们发现相应的Fowler-Nordheim(FN)曲线与传统FN理论所预测的众所周知的行为有很大的非线性差异。为了使我们的理论易于理解,我们提出了一些因素,这些因素可以根据已知函数来校正发射电流的原始FN方程。 $ \ mathrm {R} $ ,以补偿高顶曲率的量子限制效应。但是,这些实用的校正因子是从此类纳米级发射器尖端内部的电子量子态的精确分析计算得出的。

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