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Coherent laser control of current via molecular nano-junctions with semiconductor and graphene contacts

机译:通过半导体和石墨烯接触的分子纳米结的电流相干激光控制

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We propose new approaches to coherent control of transport via molecular junctions. The first method is based on the application of intrinsic semiconductor contacts and optical frequencies below the semiconductor bandgap. Our analytical theory predicts a new phenomenon, referred to as coherent destruction of induced tunnelling, which extends the phenomenon of coherent destruction of tunnelling frequently discussed in the previous literature. We also propose to use graphene electrodes as a platform for effective photon assisted tunneling through molecular conduction nanojunctions. Our results illustrate the potential of semiconductor and graphene contacts in coherent control of photocurrent.
机译:我们提出了通过分子交叉点相干控制运输的新方法。第一方法基于在半导体带隙下方的内在半导体触点和光学频率的应用。我们的分析理论预测了一种新的现象,称为诱导隧道的连贯性破坏,这延伸了前一种文学中经常讨论的隧道经常讨论的相干破坏现象。我们还建议使用石墨烯电极作为通过分子传导纳米结的有效光子辅助隧穿的平台。我们的结果说明了在光电流的相干控制中的半导体和石墨烯接触的电位。

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