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来自超快层间电荷转移的高度非线性双激子光电流。

Highly Nonlinear Biexcitonic Photocurrent from Ultrafast Interlayer Charge Transfer.

作者信息

Das Sarthak, Gupta Garima, Chatterjee Suman, Watanabe Kenji, Taniguchi Takashi, Majumdar Kausik

机构信息

Department of Electrical Communication Engineering, Indian Institute of Science, Bangalore 560012, India.

Research Center for Functional Materials, National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-044, Japan.

出版信息

ACS Nano. 2022 Jun 28;16(6):9728-9735. doi: 10.1021/acsnano.2c03397. Epub 2022 May 23.

Abstract

Strong Coulomb interactions in monolayer semiconductors allow them to host optically active large many-body states, such as the five-particle state, charged biexciton. Strong nonlinear light absorption by the charged biexciton under spectral resonance, coupled with its charged nature, makes it intriguing for nonlinear photodetection─an area that is hitherto unexplored. Using the high built-in vertical electric field in an asymmetrically designed few-layer graphene encapsulated 1L-WS heterostructure, here we report a large, highly nonlinear photocurrent arising from the strong absorption by two charged biexciton species under zero external bias (self-powered mode). Time-resolved measurement reveals that the generated charged biexcitons transfer to the few-layer graphene in a time scale of sub-5 ps, indicating an ultrafast intrinsic limit of the photoresponse. By using single- and two-color photoluminescence excitation spectroscopy, we show that the two biexcitonic peaks originate from bright-dark and bright-bright exciton-trion combinations. Such innate nonlinearity in the photocurrent due to its biexcitonic origin, coupled with the ultrafast response due to swift interlayer charge transfer, exemplifies the promise of manipulating many-body effects in monolayers toward viable optoelectronic applications.

摘要

单层半导体中的强库仑相互作用使其能够承载光学活性的大的多体状态,例如五粒子态、带电双激子。带电双激子在光谱共振下具有强烈的非线性光吸收,再加上其带电性质,使其在非线性光电探测方面颇具吸引力——这是一个迄今为止尚未探索的领域。利用不对称设计的几层石墨烯封装的1L-WS异质结构中的高内置垂直电场,我们在此报告了在零外部偏置(自供电模式)下,由两种带电双激子物种的强吸收产生的大的、高度非线性的光电流。时间分辨测量表明,所产生的带电双激子在亚5皮秒的时间尺度内转移到几层石墨烯中,这表明光响应具有超快的本征极限。通过使用单色和双色光致发光激发光谱,我们表明这两个双激子峰源自亮-暗和亮-亮激子-激子三重态组合。由于其双激子起源,光电流中存在这种固有的非线性,再加上由于层间电荷快速转移而产生的超快响应,例证了在单层中操纵多体效应以实现可行的光电子应用的前景。

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