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Applying the extended molecule approach to correlated electron transport: Important insight from model calculations

机译:将扩展分子方法应用于相关的电子传输:模型计算的重要见解

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Theoretical approaches of electric transport in correlated molecules usually consider an extended molecule, which includes, in addition to the molecule itself, parts of electrodes. In the case where electron correlations remain confined within the molecule, and the extended molecule is sufficiently large, the current can be expressed by means of Landauer-type formulas. Electron correlations are embodied into the retarded Green's function of a sufficiently large but isolated extended molecule, which represents the key quantity that can be accurately determined by means of ab initio quantum-chemical calculations. To exemplify these ideas, we present and analyze numerical results obtained within full configuration interaction calculations for an extended molecule described by the interacting resonant level model. Based on them, we argue that for narrower-band (organic) electrodes, the transport properties can be reliably computed because the extended molecule can be chosen sufficiently small to be tackled within accurate ab initio methods. For wider-band (metallic) electrodes, larger extended molecules have to be considered, in general, but a (semi)quantitative description of the transport should still be possible in the typical cases where electron transport proceeds by off-resonant tunneling. Our numerical results also demonstrate that, contrary to the usual claim, the ratio between the characteristic Coulomb strength and the level width due to molecule-electrode coupling is not the only quantity needed to assess whether electron correlation effects are strong or weak.
机译:相关分子中电传输的理论方法通常考虑扩展分子,除了分子本身,还包括电极的一部分。在电子相关性保持在分子内且扩展的分子足够大的情况下,可以通过Landauer型公式表示电流。电子相关性体现在足够大但分离的扩展分子的延迟格林函数中,该函数表示可以通过从头算起的量子化学计算精确确定的关键量。为了举例说明这些想法,我们提出并分析了在完整构型相互作用计算中,由相互作用的共振能级模型描述的扩展分子的数值结果。基于它们,我们认为对于窄带(有机)电极,可以可靠地计算传输性能,因为可以选择足够小的扩展分子以在准确的从头算方法中解决该问题。通常,对于宽带(金属)电极,必须考虑使用更大的扩展分子,但是在电子通过非共振隧穿进行传输的典型情况下,仍然可以对传输进行(半)定量描述。我们的数值结果还表明,与通常的主张相反,特征库仑强度与由于分子-电极耦合引起的能级宽度之间的比率并不是评估电子相关效应是强还是弱所需的唯一量。

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