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Circular transmission resonances and magnetic field effects in a ring of quantum dots connected to external leads in the meta-configuration

机译:在元配置中连接到外部引线的量子点环中的圆形传输共振和磁场效应

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摘要

The transmission and the circular transmission are investigated for a ring of quantum dots (in a benzene-type configuration) connected to external leads in the meta-configuration. A computational method utilizing the tight-binding approximation to the Schrodinger equation is used to solve for the transmission probabilities as a function of the electron energy and external magnetic flux. The flux dependence is incorporated into the model using a standard procedure involving the Aharonov-Bohm effect. The positions of the transmission zeros and poles in the complex energy plane, and their possible interference with or even complete cancellation of each other, are shown to correlate with the amplitude and structure of the circular transmission resonances. Large-amplitude resonances of the circular transmission are found to occur when two poles of the transmission are separated along the imaginary axis. These resonances demonstrate a high degree of flux sensitivity at specific energy values and flux ranges. A small change in flux causes the orientation of the resonance poles in the complex energy plane to rotate parallel to the real energy axis, resulting in a concurrent decrease in the circular transmission amplitude. The flux-dependent interference between the transmission poles and zeros in the complex energy plane leads to a decrease of the circular transmission resonance amplitudes. The circular transmission and its corresponding current-voltage characteristic provide more information related to the external flux than can be obtained from the normal transmission alone.
机译:对于在元构型中连接到外部引线的量子点环(苯型构型),研究了透射率和圆形透射率。使用一种对Schrodinger方程采用紧密绑定近似的计算方法来求解作为电子能量和外部磁通量的函数的传输概率。使用涉及Aharonov-Bohm效应的标准程序将通量依赖性纳入模型。传输零点和极点在复能平面中的位置,以及它们之间可能的干扰甚至完全抵消,都与圆形传输共振的幅度和结构相关。当沿假想轴分开传输的两个极点时,发现发生了圆形传输的大振幅共振。这些共振表明,在特定能量值和通量范围内,通量灵敏度很高。磁通量的微小变化会导致复数能量平面中共振极的方向平行于真实能量轴旋转,从而导致圆形传输幅度同时降低。复数能量平面中传输极点和零点之间的磁通相关干扰导致圆形传输共振幅度的减小。圆形传输及其相应的电流-电压特性提供了与外部磁通量有关的更多信息,这比仅从正常传输中获得的信息要多。

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