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Quantum filtering of electron emission from ultrasharp tips

机译:超尖尖端对电子发射的量子滤波

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This paper derives an exact fully three-dimensional wave-function solution and presents representative calculations for the problem of an electron confined in an atomically sharp three-dimensional tip. The presented solution has important implications in technologies including self-collimated electron sources, ultrafine electron-beam lithography, electron holography, and cold cathode radio-frequency generation. The tip is modeled in the prolate-spheroidal coordinate system because the principal characteristics of an ultrasharp tip, including cone angle and tip radius, are naturally represented. This quantum-mechanical analysis corroborates several experimental observations on atomically sharp tips, including unexpectedly narrow energy bandwidth for the emitted electrons and pronounced collimation, or self-focusing, of the emitted electron beam. The three-dimensional analysis developed in this paper indicates that these experimental phenomena are attributable to a "quantum filtering" effect that arises in the geometric constriction characteristic of ultrasharp vacuum field emitters. The results of this paper suggest that the free-electron supply function, routinely invoked in classical field-emission analysis, may be an inaccurate approximation for the electronic states of ultrasharp tips having quantum-filtering characteristics. Surface plots of the electron wave-function density for various total electron energies and tip geometries demonstrate the tip selectivity with respect to electron states.
机译:本文推导了精确的全三维波函数解,并给出了关于电子约束在原子尖锐的三维尖端中的问题的代表性计算。提出的解决方案对包括自准直电子源,超细电子束光刻,电子全息和冷阴极射频产生在内的技术具有重要意义。尖端是在长球体坐标系中建模的,因为自然可以表示出超锐利尖端的主要特征,包括锥角和尖端半径。这种量子力学分析证实了在原子尖锐尖端上的一些实验观察结果,包括出射电子的出乎意料的窄能量带宽以及出射电子束的明显准直或自聚焦。本文进行的三维分析表明,这些实验现象可归因于超尖锐真空场发射器的几何压缩特性中出现的“量子滤波”效应。本文的结果表明,经典场发射分析中常规调用的自由电子供应函数可能是具有量子滤波特性的超尖尖端电子状态的不准确近似。各种总电子能量和尖端几何形状的电子波函数密度的表面图显示了相对于电子态的尖端选择性。

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