Multi-mode strong coupling in Fabry-Pérot cavity−WS2 photonic crystal hybrid structures

共振(粒子物理) 联轴节(管道) 激子 极化子 导模共振 光子晶体 模耦合 激发态 光子学 材料科学 光电子学 物理 凝聚态物理 光学 分子物理学 原子物理学 衍射光栅 冶金 栅栏
作者
Haiyan Zheng,Yating Bai,Qiang Zhang,Shao‐Ding Liu
出处
期刊:Optics Express [Optica Publishing Group]
卷期号:31 (15): 24976-24976 被引量:5
标识
DOI:10.1364/oe.496305
摘要

Optical microcavities embedded with transition metal dichalcogenide (TMDC) membranes have been demonstrated as excellent platforms to explore strong light-matter interactions. Most of the previous studies focus on strong coupling between excitons of unpatterned TMDC membranes and optical resonances of various microcavities. It is recently found that TMDC membranes patterned into photonic crystal (PhC) slabs can sustain guided-mode resonances that can be excited and probed by far-fields. Here, we present a comprehensive theoretical and numerical study on optical responses of Fabry-Pérot (F-P) cavity-WS2 PhC hybrid structures to investigate the multi-mode coupling effects between excitons, guided-mode resonances and F-P modes. We show that both the exciton resonance and the guide-mode resonance of the WS2 PhC can strongly interact with F-P modes of the cavity to reach strong coupling regime. Moreover, a Rabi splitting as large as 63 meV is observed for the strong coupling between the guided-mode resonance and the F-P mode, which is much larger than their average dissipation rate. We further demonstrate that it is even possible to realize a triple mode strong coupling by tuning the guide-mode resonances spectrally overlapped with the exciton resonance and the F-P modes. The hybrid polariton states generated from the triple mode coupling exhibit a Rabi splitting of 120 meV that greatly exceeds the criterion of a triple mode strong coupling (∼29.3 meV). Our results provide that optical microcavities embedded with TMDC PhCs can serve as promising candidates for polariton devices based on multi-mode strong coupling.

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