标题: Engineering radiative coupling of excitons in 2D semiconductors
作者: Horng, Jason
Chou, Yu-Hsun
Chang, Tsu-Chi
Hsu, Chu-Yuan
Lu, Tien-Chang
Deng, Hui
光电工程学系
Department of Photonics
公开日期: 20-十一月-2019
摘要: The resonance energy and the transition rate of atoms, molecules, and solids were understood as their intrinsic properties in classical electromagnetism. It was later realized that these quantities are linked to the radiative coupling between the transition dipole and photon modes. Such effects can be greatly amplified in macroscopic many-body systems from virtual photon exchange between dipoles, but are often masked by inhomogeneity and pure dephasing, especially in solids. Here, we observe in both absorption and emission spectroscopy the renormalization of the exciton resonance and the radiative decay rate in transition metal dichalcogenides monolayers due to their radiative interactions. Tuning the photon mode density near the monolayer, we demonstrate control of cooperative Lamb shift, radiative decay, and valley polarization of the excitons as well as control of the charged exciton emission. Our work establishes a technologically accessible and robust experimental system for engineering cooperative matter-light interactions. (c) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
URI: http://dx.doi.org/10.1364/OPTICA.6.001443
http://hdl.handle.net/11536/153393
ISSN: 2334-2536
DOI: 10.1364/OPTICA.6.001443
期刊: OPTICA
Volume: 6
Issue: 11
起始页: 1443
结束页: 1448
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