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Quantitative Interpretations of Break Junction Conductance Histograms in Molecular Electron Transport

机译:分子电子传输中的断裂结电导直方图的定量解释

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摘要

We develop theoretical and computational tools for extracting quantitative molecular information from experimental conductance histograms for electron transport through single-molecule break junctions. These experimental setups always measure a combination of molecular conductance and direct electrode-electrode tunneling; our derivations explicitly incorporate the effects of such background tunneling. Validation of our models to simulated data shows that background tunneling is crucial for quantitative analyses (even in cases where it appears to be qualitatively negligible), and comparison to experimental data is favorable. Finally, we generalize these ideas to the case of molecules with a destructive interference feature and discuss potential signatures for interference in a conductance histogram.
机译:我们开发了理论和计算工具,用于从实验电导直方图中提取定量的分子信息,以通过单分子断裂连接进行电子传输。这些实验装置始终测量分子电导和直接电极-电极隧穿的组合;我们的推导明确地包含了这种背景隧道效应。我们的模型对模拟数据的验证表明,背景隧穿对于定量分析至关重要(即使在定性看来可以忽略不计的情况下),与实验数据进行比较也很有利。最后,我们将这些想法推广到具有破坏性干扰特征的分子的情况,并在电导直方图中讨论干扰的潜在特征。

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