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石墨烯-天线夹层光电探测器。

Graphene-antenna sandwich photodetector.

机构信息

Department of Electrical and Computer Engineering, Laboratory for Nanophotonics, Rice University, Houston, Texas 77005, United States.

出版信息

Nano Lett. 2012 Jul 11;12(7):3808-13. doi: 10.1021/nl301774e. Epub 2012 Jun 19.

Abstract

Nanoscale antennas sandwiched between two graphene monolayers yield a photodetector that efficiently converts visible and near-infrared photons into electrons with an 800% enhancement of the photocurrent relative to the antennaless graphene device. The antenna contributes to the photocurrent in two ways: by the transfer of hot electrons generated in the antenna structure upon plasmon decay, as well as by direct plasmon-enhanced excitation of intrinsic graphene electrons due to the antenna near field. This results in a graphene-based photodetector achieving up to 20% internal quantum efficiency in the visible and near-infrared regions of the spectrum. This device can serve as a model for merging the light-harvesting characteristics of optical frequency antennas with the highly attractive transport properties of graphene in new optoelectronic devices.

摘要

夹在两层石墨烯之间的纳米级天线可产生光电探测器,与无天线石墨烯器件相比,该探测器能将可见光和近红外光有效地转换成电子,光电流增强了 800%。天线通过两种方式贡献光电流:通过在天线结构中由于等离子体衰减而产生的热电子的转移,以及由于天线近场导致的对固有石墨烯电子的直接等离子体增强激发。这导致基于石墨烯的光电探测器在光谱的可见和近红外区域实现高达 20%的内量子效率。该器件可用作模型,将光频天线的光捕获特性与新光电设备中石墨烯的高吸引力传输特性结合起来。

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