Modeling and Visualization of Electron Scattering on Quantum Rings

Q4 Computer Science
E.A. Muzykina, Y. D. Sibirmovsky
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引用次数: 0

Abstract

The problem of scattering of quasi-dimensional electrons on a potential in the form of a quantum ring and a quantum dot is solved. The problem is addressed as a part of analysis of quantum interference effects in semiconductor nanostructures with nontrivial geometry as well as for the design of nanoelectronic devices based on them. In contrast to existing works, algorithms for solving both stationary and non-stationary Schrödinger equation with arbitrary scattering potential are developed here. Analytical and finite-difference methods are used, which makes it possible to obtain an arbitrarily accurate solution, with which the process of electron scattering on a quantum ring is modeled and visualized. This visualization allows us to discover how the shape of the quantum ring affects the angular distribution of the scattering amplitude as well as determine the presence of a self-interference of the scattered electron wave function.
量子环上电子散射的建模与可视化
解决了量子环和量子点形式的准维电子在势上的散射问题。这个问题是作为非平凡几何半导体纳米结构中量子干涉效应分析的一部分以及基于它们的纳米电子器件设计的一部分来解决的。与已有的工作相比,本文开发了求解任意散射势的平稳和非平稳Schrödinger方程的算法。利用解析法和有限差分法,可以得到任意精确的解,从而模拟和可视化电子在量子环上的散射过程。这种可视化使我们能够发现量子环的形状如何影响散射振幅的角分布,以及确定散射电子波函数的自干涉的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Scientific Visualization
Scientific Visualization Computer Science-Computer Vision and Pattern Recognition
CiteScore
1.30
自引率
0.00%
发文量
20
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