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单层WS薄膜的光电特性研究。

Study on photoelectric characteristics of monolayer WS films.

作者信息

Wang Lin, Wang Wenyan, Wang Quan, Chi Xiaochun, Kang Zhihui, Zhou Qiang, Pan Lingyun, Zhang Hanzhuang, Wang Yinghui

机构信息

Femtosecond Laser Laboratory, Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education), College of Physics, Jilin University Changchun 130012 P. R. China

State Key Laboratory of Superhard Materials, College of Physics, Jilin University Changchun 130012 P. R. China.

出版信息

RSC Adv. 2019 Nov 14;9(64):37195-37200. doi: 10.1039/c9ra07924f. eCollection 2019 Nov 13.

Abstract

It is important to determine the time-dependent evolution of the excited monolayer WS, which will provide a basis for the reasonable design of optoelectronic devices based on two-dimensional transition metal dichalcogenides. Here, we made a simple and large-area photodetector based on the monolayer WS, with high light sensitivity and fast response, benefiting from the special dynamics of carrier involving the exciton, trion, and charge. Moreover, we tested the relaxation behavior of the excited monolayer WS by employing transient absorption (TA). It was found that the multi-body interaction among exciton would occur after the density of pump photon increases to 3.45 × 10 photons per cm. The exciton dissociation accompanying the generation of trion would appear in the photo-induced relaxation process, which would be a benefit for the operation of this photodetector. Increasing the energy of the exciton is good for the generation of carrier by comparing the relaxation behavior of WS excited to A and B exciton states. However, the bound exciton relaxation, originating from the capture process of the defect state, would exist and play an unfavorable role during the functioning of devices.

摘要

确定受激单层WS₂随时间的演化非常重要,这将为基于二维过渡金属二硫属化物的光电器件的合理设计提供基础。在此,我们基于单层WS₂制作了一种简单的大面积光电探测器,具有高光敏性和快速响应,这得益于涉及激子、三重子和电荷的载流子的特殊动力学。此外,我们通过瞬态吸收(TA)测试了受激单层WS₂的弛豫行为。发现当泵浦光子密度增加到每平方厘米3.45×10个光子后,激子之间会发生多体相互作用。在光致弛豫过程中会出现伴随三重子产生的激子解离,这将有利于该光电探测器的运行。通过比较激发到A和B激子态的WS₂的弛豫行为,增加激子能量有利于载流子的产生。然而,源于缺陷态捕获过程的束缚激子弛豫在器件运行过程中会存在并起到不利作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3746/9075536/6a436afd179d/c9ra07924f-f1.jpg

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