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When can time-dependent currents be reproduced by the Landauer steady-state approximation?

机译:何时可以通过Landauer稳态近似再现依赖于时间的电流?

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We establish well-defined limits in which the time-dependent electronic currents across a molecular junction subject to a fluctuating environment can be quantitatively captured via the Landauer steady-state approximation. For this, we calculate the exact time-dependent non-equilibrium Green's function (TD-NEGF) current along a model two-site molecular junction, in which the site energies are subject to correlated noise, and contrast it with that obtained from the Landauer approach. The ability of the steady-state approximation to capture the TD-NEGF behavior at each instant of time is quantified via the same-time correlation function of the currents obtained from the two methods, while their global agreement is quantified by examining differences in the average currents. The Landauer steady-state approach is found to be a useful approximation when (i) the fluctuations do not disrupt the degree of delocalization of the molecular eigenstates responsible for transport and (ii) the characteristic time for charge exchange between the molecule and leads is fast with respect to the molecular correlation time. For resonant transport, when these conditions are satisfied, the Landauer approach is found to accurately describe the current, both on average and at each instant of time. For non-resonant transport, we find that while the steady-state approach fails to capture the time-dependent transport at each instant of time, it still provides a good approximation to the average currents. These criteria can be employed to adopt effective modeling strategies for transport through molecular junctions in interaction with a fluctuating environment, as is necessary to describe experiments. Published by AIP Publishing.
机译:我们建立在横跨一个分子结受波动的环境中的时间依赖性的电子电流可以经由兰道尔稳态近似定量捕获定义明确的限制。对于这一点,我们计算沿着一个模型双位点的分子结的确切时间依赖性非平衡格林函数(TD-NEGF)的电流,其中,所述站点能量受到相关噪声,并与从兰道尔获得对比它方法。稳态近似的捕捉在每个时刻的TD-NEGF行为的能力,通过从两种方法获得的电流相同的时间关联函数定量,而他们的全球协议是通过检查平均差异量化电流。的兰道尔稳态的方法被发现是一种有用的近似当(i)的波动不会破坏负责运输和分子本征态的离域的程度(ii)用于分子和引线之间的电荷交换的特征时间是快相对于该分子相关时间。对于谐振运输,当这些条件被满足,兰道尔的方法被发现准确地描述当前,无论在平均和在每个时刻。对于非谐振运输,我们发现,虽然稳态方法未能捕获时间相关的运输,在每个时刻,它仍然提供了一个很好的近似平均电流。这些标准可以被用来采取有效的建模策略,用于通过在具有波动的环境相互作用的分子结运输,因为有必要说明的实验。通过AIP发布发布。

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