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Fano-Rashba effect in thermoelectricity of a double quantum dot molecular junction

机译:双量子点分子结的热电中的Fano-Rashba效应

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摘要

We examine the relation between the phase-coherent processes and spin-dependent thermoelectric effects in an Aharonov-Bohm (AB) interferometer with a Rashba quantum dot (QD) in each of its arm by using the Green's function formalism and equation of motion (EOM) technique. Due to the interplay between quantum destructive interference and Rashba spin-orbit interaction (RSOI) in each QD, an asymmetrical transmission node splits into two spin-dependent asymmetrical transmission nodes in the transmission spectrum and, as a consequence, results in the enhancement of the spin-dependent thermoelectric effects near the spin-dependent asymmetrical transmission nodes. We also examine the evolution of spin-dependent thermoelectric effects from a symmetrical parallel geometry to a configuration in series. It is found that the spin-dependent thermoelectric effects can be enhanced by controlling the dot-electrode coupling strength. The simple analytical expressions are also derived to support our numerical results.PACS numbers: 73.63.Kv; 71.70.Ej; 72.20.Pa
机译:我们通过使用格林函数形式和运动方程(EOM),在其臂的每个臂中带有Rashba量子点(QD)的Aharonov-Bohm(AB)干涉仪中,检查了相干过程与自旋相关的热电效应之间的关系)技术。由于每个QD中的量子破坏性干扰与Rashba自旋轨道相互作用(RSOI)之间的相互作用,一个不对称的传输节点在传输频谱中分裂为两个自旋相关的不对称的传输节点,因此,导致了自旋相关的不对称传输节点附近的自旋相关热电效应。我们还研究了自旋相关的热电效应从对称的平行几何结构演变为串联结构的过程。发现通过控制点电极耦合强度可以增强自旋相关的热电效应。还推导了简单的分析表达式以支持我们的数值结果。PACS编号:73.63.Kv; 71.70.Ej; 72.20。帕

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