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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Thermoelectric transport properties of a T-coupled quantum dot: Atomic approach for the finite U case
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Thermoelectric transport properties of a T-coupled quantum dot: Atomic approach for the finite U case

机译:T耦合量子点的热电输运性质:有限U情况的原子方法

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We study thermoelectric transport properties through a gate defined T-coupled quantum dot, describing the system at base with the single impurity Anderson model (SIAM), whose corresponding Green's functions are calculated employing the finite correlation U atomic approach. We compute, with the linear approximation for the thermoelectric transport coefficients,the electrical and thermal conductance (G and K), the thermopower S, the product of the thermoelectric figure of merit and the temperature ZT, for all the regimes of the SIAM: empty quantum dot, intermediate valence, Kondo, and double occupation, at different temperatures; the treatment employed extends the results obtained for the limit of infinite U-Coulomb repulsion in the quantum dot, and has a many-body character, which is absent in Green's function descriptions that employ mean field approximations. Our main result connects the ZT behavior with the interplay between the thermopower and the violation of the Wiedemann-Franz relation; the results are in good agreement with other recent theoretical papers that employ the numerical renormalization group (NRG), different Green's function approximations, and some experimental reports.
机译:我们通过门定义的T耦合量子点研究热电输运性质,用单杂质安德森模型(SIAM)描述了基本系统,该系统使用有限相关U原子方法计算了其对应的格林函数。对于SIAM的所有状态,我们用热电输运系数的线性近似值来计算电导率和热导率(G和K),热功率S,热电因数和温度ZT的乘积:在不同温度下的量子点,中间价,近藤和双重占据;所采用的处理方法扩展了量子点中无限U-Coulomb排斥极限所获得的结果,并具有多体特征,这在采用平均场近似的格林函数描述中是不存在的。我们的主要结果将ZT行为与热电和违反Wiedemann-Franz关系之间的相互作用联系起来;结果与使用数值重归一化组(NRG),不同的格林函数近似值和一些实验报告的其他最新理论论文非常吻合。

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