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Quantum Transport in Mesoscopic Ring Structures: Effects of Impurities, Long-Range Hopping and Interactions

机译:介观环结构中的量子输运:杂质,远距离跳变和相互作用的影响

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In the present review we make a comprehensive analysis of our understanding on electron transport in mesoscopic single-channel rings and multi-channel cylinders within a tight-binding framework. A spectacular mesoscopic phenomenon where a non-decaying current circulates in a small conducting loop is observed upon the application of an Aharonov-Bohm flux φ. To understand its behavior one has to focus attention on the interplay of quantum phase coherence, electron-electron correlation and disorder. This is a highly challenging problem and here we address it for some simple loop geometries with their detailed energy band structures to get an entire picture at the microscopic level. The behavior of low-field magnetic response of persistent current and its temperature dependence are also discussed.
机译:在本综述中,我们对我们在紧密结合框架内的介观单通道环和多通道圆柱体中电子传输的理解进行了全面分析。在应用阿哈罗诺夫-鲍姆通量φ时,会观察到一种壮观的介观现象,其中一个非衰减电流在一个小的导电环路中循环。要了解其行为,必须将注意力集中在量子相干,电子-电子相关性和无序性的相互作用上。这是一个极富挑战性的问题,在这里,我们针对一些简单的环路几何体及其详细的能带结构来解决这一问题,从而获得微观水平的完整图像。还讨论了持续电流的低场磁响应行为及其温度依赖性。

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