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Electron transport through curved two-dimensional quantum waveguide

机译:电子通过弯曲二维量子波导的传输

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This paper details the study of electron transport through a two-dimensional curved quantum waveguide. The curvature of the quantum waveguide is found to greatly affect the transport properties. It is shown that no evanescent mode exists when the inner radius of the curved part of the waveguide is zero. Also, this paper details how localized modes with energy below the Fermi energy can be formed in the curved part due to curvilinear effects. A series of Fano-resonance type dips of the transmission coefficient appear because of the presence of localized modes. Due to the quantum effect, the transmission coefficient and the traversal time increase nonlinearly with the curved angle ~(θ0). This nonlinear property is destroyed as the radius increases.
机译:本文详细介绍了通过二维弯曲量子波导传输电子的研究。发现量子波导的曲率极大地影响传输特性。示出了当波导的弯曲部分的内半径为零时不存在渐逝模式。同样,本文详细介绍了由于曲线效应如何在弯曲部分形成能量低于费米能量的局部模式。由于存在局部模式,出现了一系列透射系数的法诺共振类型的下降。由于量子效应,透射系数和穿越时间随弯曲角度〜(θ0)非线性增加。随着半径的增加,该非线性特性被破坏。

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