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Communication: Electronic and transport properties of molecular junctions under a finite bias: A dual mean field approach

机译:交流:有限偏压下分子连接的电子和传输性质:双重均值场方法

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We show that when a molecular junction is under an external bias, its properties cannot be uniquely determined by the total electron density in the same manner as the density functional theory for ground state properties. In order to correctly incorporate bias-induced nonequilibrium effects, we present a dual mean field (DMF) approach. The key idea is that the total electron density together with the density of current-carrying electrons are sufficient to determine the properties of the system. Two mean fields, one for current-carrying electrons and the other one for equilibrium electrons can then be derived. Calculations for a graphene nanoribbon junction show that compared with the commonly used ab initio transport theory, the DMF approach could significantly reduce the electric current at low biases due to the non-equilibrium corrections to the mean field potential in the scattering region.
机译:我们表明,当分子结在外部偏置下时,其性质不能由总电子密度唯一地确定,其方式与基态性质的密度泛函理论相同。为了正确地包含偏差引起的非平衡效应,我们提出了一种双重均值场(DMF)方法。关键思想是总电子密度以及载流电子的密度足以确定系统的特性。然后可以得出两个平均场,一个用于载流电子,另一个用于平衡电子。石墨烯纳米带结的计算表明,与常用的从头算传输理论相比,由于对散射区域中的平均场电势进行了非平衡校正,DMF方法可以在低偏置下显着降低电流。

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