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Charge transport and ac response under light illumination in gate-modulated DNA molecular junctions

机译:栅极调节的DNA分子连接在光照下的电荷传输和交流响应

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Using a two-strand tight-binding model and within nonequilibrium Green's function approach, we study charge transport through DNA sequences (GC)(NGC) and (GC)(1)(TA)(NTA)(GC)(3) sandwiched between two Pt electrodes. We show that at low temperature DNA sequence (GC)(NGC) exhibits coherent charge carrier transport at very small bias, since the highest occupied molecular orbital in the GC base pair can be aligned with the Fermi energy of the metallic electrodes by a gate voltage. A weak distance dependent conductance is found in DNA sequence (GC)(1)(TA)(NTA)(GC)(3) with large N-TA. Different from the mechanism of thermally induced hopping of charges proposed by the previous experiments, we find that this phenomenon is dominated by quantum tunnelling through discrete quantum well states in the TA base pairs. In addition, ac response of this DNA junction under light illumination is also investigated. The suppression of ac conductances of the left and right lead of DNA sequences at some particular frequencies is attributed to the excitation of electrons in the DNA to the lead Fermi surface by ac potential, or the excitation of electrons in deep DNA energy levels to partially occupied energy levels in the transport window. Therefore, measuring ac response of DNA junctions can reveal a wealth of information about the intrinsic dynamics of DNA molecules.
机译:使用两链紧密结合模型并且在非平衡格林函数方法内,我们研究了电荷通过DNA序列(GC)(NGC)和(GC)(1)(TA)(NTA)(GC)(3)夹在中间的电荷传输两个铂电极。我们显示,在低温下,DNA序列(GC)(NGC)在很小的偏压下会表现出相干的电荷载流子传输,因为GC碱基对中最高的占据分子轨道可以通过栅极电压与金属电极的费米能对齐。在具有较大N-TA的DNA序列(GC)(1)(TA)(NTA)(GC)(3)中发现弱距离相关的电导。与之前的实验提出的电荷引起的热跃迁机理不同,我们发现这种现象主要是通过TA基对中离散量子阱态的量子隧穿引起的。此外,还研究了该DNA连接在光照下的交流响应。 DNA序列的左右导联在某些特定频率上的交流电导的抑制归因于通过交流电将DNA中的电子激发到费米先导表面,或将深DNA能级中的电子激发到部分占据运输窗口中的能量水平。因此,测量DNA连接的交流响应可以揭示有关DNA分子内在动力学的大量信息。

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