Study of the Transmission and Reflection of Electron Waves through a Bridge System Consisting of Quan-tum Dots Using the Tight-Binding Approximation

S. Al-Saidi
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Abstract

In this study, we treat tunneling similarly to the dispersion problem where the wave incident on the barrier is partly transmitted and partly reflected. The transport potential will be related to conduction using the tight-binding model, the steady-state formula, and the Landauer relationship. The tunnel was processed using a bridge model. We studied the effect of changing the size of the quantum dots that make the bridge on the probability of transmission and reflection, the effect of changing the number of quantum dots on them. The transmission and reflection spectrums were compared as functions of the system's energy spectrum. We also noticed the effect of the transmission and reflection spectrum on the conductivity of the system. The results that have been reached, and will contribute significantly to the manufacture of nano-devices in the not-too-distant ture.
利用紧密结合近似法研究电子波在由泉点组成的桥系统中的传输和反射
在本研究中,我们将隧穿问题与色散问题类似处理,即入射到势垒上的波部分被传输,部分被反射。我们将利用紧密束缚模型、稳态公式和朗道尔关系将输运势与传导联系起来。隧道采用桥模型进行处理。我们研究了改变构成桥的量子点大小对透射和反射概率的影响,以及改变量子点数量对它们的影响。透射谱和反射谱作为系统能谱的函数进行了比较。我们还注意到透射谱和反射谱对系统电导率的影响。这些研究成果将在不久的将来为纳米设备的制造做出重大贡献。
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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