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Molecular optoelectronics: the interaction of molecular conduction junctions with light

机译:分子光电子学:分子传导结与光的相互作用

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摘要

The interaction of light with molecular conduction junctions is attracting growing interest as a challenging experimental and theoretical problem on one hand, and because of its potential application as a characterization and control tool on the other. It stands at the interface between two important fields, molecular electronics and molecular plasmonics and has attracted attention as a challenging scientific problem with potentially important technological consequences. Here we review the present state of the art of this field, focusing on several key phenomena and applications: using light as a switching device, using light to control junction transport in the adiabatic and non-adiabatic regimes, light generation in biased junctions and Raman scattering from such systems. This field has seen remarkable progress in the past decade, and the growing availability of scanning tip configurations that can combine optical and electrical probes suggests that further progress towards the goal of realizing molecular optoelectronics on the nanoscale is imminent.
机译:光与分子传导结的相互作用一方面吸引了越来越多的关注,这是一个具有挑战性的实验和理论问题,另一方面,由于其潜在的应用作为表征和控制工具。它位于分子电子学和分子等离子体技术这两个重要领域之间的交汇处,作为具有潜在重要技术后果的具有挑战性的科学问题而受到关注。在这里,我们回顾该领域的现有技术,重点关注几个关键现象和应用:使用光作为开关设备,在绝热和非绝热状态下使用光控制结传输,在偏置结和拉曼中产生光这些系统的散射。在过去的十年中,该领域取得了令人瞩目的进展,并且可以将光学探针和电探针结合使用的扫描尖端配置的可用性不断提高,这表明朝着实现纳米级分子光电技术目标的进一步进展迫在眉睫。

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