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Long-distance coherent tunneling effect on the charge and heat currents in serially coupled triple quantum dots

机译:长距离相干隧穿效应对串联耦合三量子点中电荷和热电流的影响

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摘要

The effect of longdistance coherent tunneling (LDCT) on the charge and heat currents in serially coupled triple quantum dots (TQDs) connected to electrodes is illustrated by using a combination of the extended Hurbbard and Anderson models. The charge and heat currents are calculated with a closed-form Landauer expression for the transmission coefficient suitable for the Coulomb blockade regime. The physical parameters including bias-dependent quantum dot energy levels, electron Coulomb interactions, and electron hopping strengths are calculated in the framework of effective mass theory for semiconductor TQDs. We demonstrate that the effect of LDCT on the charge and heat currents can be robust. In addition, it is shown that prominent heat rectification behavior can exist in the TQD system with asymmetrical energy levels.
机译:通过使用扩展的Hurbbard和Anderson模型的组合来说明长距离相干隧穿(LDCT)对连接到电极的串联耦合三重量子点(TQD)中的电荷和热电流的影响。用适合库仑阻塞状态的传输系数,用封闭形式的Landauer表达式计算电荷和热电流。物理参数包括与偏置有关的量子点能级,电子库仑相互作用和电子跳跃强度,这些都是在半导体T​​QD的有效质量理论框架内计算的。我们证明了LDCT对充电电流和热电流的影响可能很强。此外,结果表明,在具有不对称能级的TQD系统中,可以存在明显的热精馏行为。

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