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Non-Hermitian Hamiltonians and Quantum Transport in Multi-Terminal Conductors

机译:多终端导线中的非私人哈密顿人和量子传输

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摘要

We study the transport properties of multi-terminal Hermitian structures within the non-equilibrium Green’s function formalism in a tight-binding approximation. We show that non-Hermitian Hamiltonians naturally appear in the description of coherent tunneling and are indispensable for the derivation of a general compact expression for the lead-to-lead transmission coefficients of an arbitrary multi-terminal system. This expression can be easily analyzed, and a robust set of conditions for finding zero and unity transmissions (even in the presence of extra electrodes) can be formulated. Using the proposed formalism, a detailed comparison between three- and two-terminal systems is performed, and it is shown, in particular, that transmission at bound states in the continuum does not change with the third electrode insertion. The main conclusions are illustratively exemplified by some three-terminal toy models. For instance, the influence of the tunneling coupling to the gate electrode is discussed for a model of quantum interference transistor. The results of this paper will be of high interest, in particular, within the field of quantum design of molecular electronic devices.
机译:我们研究了在紧密结合近似下非平衡绿色功能形式主义内的多末端隐士结构的运输特性。我们表明非封闭汉密尔顿人自然地出现在相干隧道的描述中,并且对于任意多终端系统的铅透射系数的通用紧凑表达的推导是必不可少的。可以容易地分析该表达,并且可以配制用于找到零和单位传输的鲁棒条件(即使在存在额外电极时)。使用所提出的形式主义,执行三个和双终端系统之间的详细比较,特别地示出了连续内的绑定状态下的传输不会随第三电极插入而改变。主要结论是由一些三终端玩具模型的说明性的。例如,讨论了量子干涉晶体管的模型讨论了隧道耦合到栅电极的影响。本文的结果将具有高兴趣,特别是在分子电子设备的量子设计领域内。

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