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首页> 外文期刊>Communications in Theoretical Physics >Large Negative Differential of Heat Generation in a Two-Level Quantum Dot Coupled to Ferromagnetic Leads
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Large Negative Differential of Heat Generation in a Two-Level Quantum Dot Coupled to Ferromagnetic Leads

机译:与铁磁引线耦合的两能级量子点中的大负热产生差

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Heat current exchanged between a two-level quantum dot (QD) and a phonon reservoir coupled to it is studied within the nonequilibrium Green's function method. We consider that the QD is connected to the left and right ferromagnetic leads. It is found that the negative differential of the heat generation (NDHG) phenomenon, i.e., the intensity of the heat generation decreases with increasing bias voltage, is obviously enhanced as compared to that in single-level QD system. The NDHG can emerge in the absence of the negative differential conductance of the electric current, and occurs in different bias voltage regions when the magnetic moments of the two leads are arranged in parallel or antiparallel configurations. The characteristics of the found phenomena can be understood by examining the change of the electron number on the dot.
机译:在非平衡格林函数方法中研究了两能级量子点(QD)和与其耦合的声子储层之间交换的热流。我们认为QD连接到左右铁磁引线。已经发现,与单级QD系统相比,发热(NDHG)现象的负微分,即,随着偏置电压的增加,发热的强度减小了。 NDHG可能会在电流没有负微分电导的情况下出现,并在两条引线的磁矩平行或反平行排列时出现在不同的偏置电压区域。通过检查点上电子数的变化,可以了解发现的现象的特征。

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