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Effect of finite Coulomb interaction on full counting statistics of electronic transport through single-molecule magnet

机译:库仑有限相互作用对单分子磁体电子输运的全计数统计的影响

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摘要

We study the full counting statistics (FCS) in a single-molecule magnet (SMM) with finite Coulomb interaction U. For finite U the FCS, differing from U→∞, shows a symmetric gate-voltage-dependence when the coupling strengths with two electrodes are interchanged, which can be observed experimentally just by reversing the bias-voltage. Moreover, we find that the effect of finite U on shot noise depends on the internal level structure of the SMM and the coupling asymmetry of the SMM with two electrodes as well. When the coupling of the SMM with the incident-electrode is stronger than that with the outgoing-electrode, the super-Poissonian shot noise in the sequential tunneling regime appears under relatively small gate-voltage and relatively large finite U, and dose not for U→∞; while it occurs at relatively large gate-voltage for the opposite coupling case. The formation mechanism of super-Poissonian shot noise can be qualitatively attributed to the competition between fast and slow transport channels.
机译:我们研究具有库仑相互作用U的单分子磁体(SMM)中的全计数统计(FCS)。对于有限的U,与U→∞不同的FCS在具有两个耦合强度时表现出对称的栅极电压依赖性。电极是互换的,仅通过反转偏置电压即可通过实验观察到。此外,我们发现有限的U对散粒噪声的影响取决于SMM的内部能级结构以及SMM与两个电极的耦合不对称性。当SMM与入射电极之间的耦合强于与向外电极之间的耦合时,在相对较小的栅极电压和相对较大的有限U值下,顺序隧穿状态下的超泊松散粒噪声就会出现,并且剂量不适用于U →∞;对于相反的耦合情况,它在相对较大的栅极电压下发生。超泊松散粒噪声的形成机理可以定性地归因于快速和慢速运输通道之间的竞争。

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