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Thermodynamics of the polaron master equation at finite bias

机译:有限偏置下极化子主方程的热力学

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We study coherent transport through a double quantum dot. Its two electronic leads induce electronic matter and energy transport and a phonon reservoir contributes further energy exchanges. By treating the system-lead couplings perturbatively, whereas the coupling to vibrations is treated non-perturbatively in a polaron-transformed frame, we derive a thermodynamic consistent low-dimensional master equation. When the number of phonon modes is finite, a Markovian description is only possible when these couple symmetrically to both quantum dots. For a continuum of phonon modes however, also asymmetric couplings can be described with a Markovian master equation. We compute the electronic current and dephasing rate. The electronic current enables transport spectroscopy of the phonon frequency and displays signatures of Franck-Condon blockade. For infinite external bias but finite tunneling bandwidths, we find oscillations in the current as a function of the internal bias due to the electron-phonon coupling. Furthermore, we derive the full fluctuation theorem and show its identity to the entropy production in the system. (C) 2015 AIP Publishing LLC.
机译:我们研究通过双量子点的相干传输。它的两条电子导线引发电子物质和能量的传输,声子储层进一步促进了能量交换。通过扰动地处理系统-引线耦合,而在极化子变换框架中非扰动地处理与振动的耦合,我们导出了一个热力学一致的低维主方程。当声子模式的数量有限时,仅当它们与两个量子点对称耦合时才可能进行马尔可夫描述。但是对于连续的声子模态,也可以用马尔可夫主方程描述非对称耦合。我们计算电子电流和移相率。电流使得能够进行声子频率的传输光谱分析,并显示出弗兰克-康登封锁的特征。对于无限的外部偏置但有限的隧穿带宽,由于电子-声子耦合,我们发现电流的振荡是内部偏置的函数。此外,我们导出了全涨落定理,并证明了其与系统中熵产生的一致性。 (C)2015 AIP Publishing LLC。

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