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Mechanical Control of Polaritonic States in Lead Halide Perovskite Phonons Strongly Coupled in THz Microcavity
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Publication Year
2023-11-23
Publisher
American Chemical Society
Citation
Journal of Physical Chemistry Letters, Vol.14, pp.10318-10327
Mesh Keyword
Fabry-Perot cavityFilm-thicknessGraphene oxidesHalide perovskitesMechanical controlMicroporous substratePerovskite filmsPhonon polaritonsPolaritonicsRabi splitting
All Science Classification Codes (ASJC)
Materials Science (all)Physical and Theoretical Chemistry
Abstract
We demonstrate the generation and control of polaritonic states in perovskite phonon polaritons, which are strongly coupled in the middle of a flexible Fabry-Perot cavity. We fabricated flexible perovskite films on a microporous substrate coated with graphene oxide, which led to a virtually free-standing film incorporated into the microcavity. Rabi splitting was observed when the cavity resonance was in tune with that of the phonons. The Rabi splitting energy increased as the film thickness increased, reaching 1.9 meV, which is 2.4-fold higher than the criterion for the strong coupling regime. We obtained dispersion curves for various perovskite film thicknesses exhibiting two polariton branches; clear beats between the two polaritonic branches were observed in the time domain. Flexible cavity devices with perovskite phonons enable macroscopic control over the polaritonic energy states through bending processes, which add an additional degree of freedom in the manipulation of polaritonic devices.
ISSN
1948-7185
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/33813
DOI
https://doi.org/10.1021/acs.jpclett.3c02717
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Type
Article
Funding
This work was supported by the Midcareer Researcher Program (2020R1A2C1005735) and the Basic Science Research Program (2021R1A6A1A10044950) through a National Research Foundation grant funded by the Korea Government.
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Park, Ji-Yong  Image
Park, Ji-Yong 박지용
Department of Physics
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