激子
比克西顿
扩散
材料科学
饱和(图论)
电场
光子
各向异性
密度泛函理论
分子物理学
物理
凝聚态物理
光学
量子力学
数学
组合数学
作者
Yuchen Dai,Guangyi Tao,Yuxiang Chen,Guangjie Yao,Donglin Liu,Zhibo Dang,Zhengchang Liu,Pu Peng,Yijing Huang,Xiao Chun He,Han Zhang,Zhipeng Zheng,Haonan Sun,Wenqi Qian,Pengfei Qi,Yongji Gong,Yan Guan,Kaihui Liu,Zheyu Fang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-08-14
卷期号:18 (34): 23196-23204
标识
DOI:10.1021/acsnano.4c05723
摘要
Excitonic devices operate based on excitons, which can be excited by photons as well as emitting photons and serve as a medium for photon-carrier conversion. Excitonic devices are expected to combine the advantages of both the high response rate of photonic devices and the high integration of electronic devices simultaneously. However, because of the neutral feature, exciton transport is generally achieved via diffusion rather than using electric fields, and the efficient control of exciton flux directionality has always been difficult. In this work, a precisely designed one-dimensional periodic nanostructure (1DPS) is used to introduce periodic strain field along with resonant mode to the WS
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