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Effect of Distortion in a Vibrational Potential Surface on Transport Through a Molecular Transistor

机译:振动势表面中的畸变对通过分子晶体管传输的影响

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We analyze the effect of a pure distortion of nuclear potential on nonequilibrium-vibration-assisted tunneling through a molecular quantum dot with a single level coupled to the vibrational mode. In this study, we employ rate equations to examine the current-voltage characteristics and zero-frequency shot noise. We find that distortion induces a strong negative differential conductance (NDC) and a giant Fano factor for an anionic molecule; while a weak NDC and a nearly Poissonian shot noise occur for a neutral molecule. We discuss, in detail, the reasons for these asymmetric transport properties.
机译:我们分析了纯的核势畸变对非平衡振动辅助隧穿的影响,该隧穿通过具有耦合到振动模式的单能级的分子量子点。在这项研究中,我们采用速率方程来检查电流-电压特性和零频散粒噪声。我们发现,畸变会诱导强的负微分电导(NDC)和阴离子分子的巨大Fano因子。而中性分子会出现弱的NDC和接近泊松的散粒噪声。我们将详细讨论这些不对称传输特性的原因。

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