激子
辐射传输
极化(电化学)
物理
干扰(通信)
职位(财务)
光电子学
原子物理学
光学
凝聚态物理
化学
电信
物理化学
计算机科学
频道(广播)
经济
财务
作者
Sanghyeok Park,Dongha Kim,Yun‐Seok Choi,Arthur Baucour,Donghyeong Kim,Sangho Yoon,Kenji Watanabe,Takashi Taniguchi,Jonghwa Shin,Jonghwan Kim,Min‐Kyo Seo
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-02-28
卷期号:23 (6): 2158-2165
被引量:2
标识
DOI:10.1021/acs.nanolett.2c04604
摘要
Embodying bosonic and interactive characteristics in two-dimensional space, excitons in transition metal dichalcogenides (TMDCs) have garnered considerable attention. The utilization of the strong-correlation effects, long-range transport, and valley-dependent properties requires customizing exciton decay dynamics. Vacuum-field manipulation allows radiative decay engineering without disturbing intrinsic material properties. However, conventional flat mirrors cannot customize the radiative decay landscape in TMDC's plane or support vacuum-field interference with desired spectrum and polarization properties. Here, we present a meta-mirror platform resolving the issues with more optical degrees of freedom. For neutral excitons of the monolayer MoSe2, the optical layout formed by meta-mirrors manipulated the radiative decay rate in space by 2 orders of magnitude and revealed the statistical correlation between emission intensity and spectral line width. Moreover, the anisotropic meta-mirror demonstrated polarization-dependent radiative decay control. Our platform would be promising to tailor two-dimensional distributions of lifetime, density, diffusion, and polarization of TMDC excitons in advanced opto-excitonic applications.
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