Long-Range Self-Hybridized Exciton-Polaritons in Two-Dimensional Ruddlesden-Popper Perovskites

被引:1
|
作者
Black, Maximilian [1 ]
Asadi, Mehdi [2 ]
Darman, Parsa [2 ]
Seckin, Sezer [3 ]
Schillmoller, Finja [1 ]
Konig, Tobias A. F. [3 ,4 ,5 ]
Darbari, Sara [1 ,2 ]
Talebi, Nahid [1 ,6 ]
机构
[1] Univ Kiel, Inst Expt & Appl Phys, D-24098 Kiel, Germany
[2] Tarbiat Modares Univ, Fac Elect & Comp Engn, Nanosensors & Detectors Lab, Tehran 1411713116, Iran
[3] Leibniz Inst Polymerforsch Dresden eV, D-01069 Dresden, Germany
[4] Tech Univ Dresden, Ctr Adv Elect Dresden Cfaed, D-01062 Dresden, Germany
[5] Tech Univ Dresden, Fac Chem & Food Chem, D-01069 Dresden, Germany
[6] Univ Kiel, Kiel Nano Surface & Interface Sci KiNSIS, D-24118 Kiel, Germany
来源
ACS PHOTONICS | 2024年 / 11卷 / 10期
基金
欧洲研究理事会;
关键词
exciton-polariton; 2D Ruddlesden-Popper perovskite; self-hybridized; strong coupling; CRYSTAL;
D O I
10.1021/acsphotonics.4c00824
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Lead halide perovskites have emerged as platforms for exciton-polaritonic studies at room temperature, thanks to their excellent photoluminescence efficiency and synthetic versatility. In this work, we find proof of strong exciton-photon coupling in cavities formed by the layered crystals themselves, a phenomenon known as the self-hybridization effect. We use multilayers of high-quality Ruddlesden-Popper perovskites in their 2D crystalline form, benefiting from their quantum-well excitonic resonances and the strong Fabry-Perot cavity modes resulting from the total internal reflection at their smooth surfaces. Optical spectroscopy reveals bending of the cavity modes typical for exciton-polariton formation, and absorption and photoluminescence spectroscopy shows splitting of the excitonic resonance and thickness-dependent peak positions. Strikingly, local optical excitation with energy below the excitonic resonance of the flakes in photoluminescence measurements unveils the coupling of light to in-plane polaritonic modes with directed propagation. These exciton-polaritons exhibit high coupling efficiencies and extremely low loss propagation mechanisms, which are confirmed by finite difference time domain simulations. Thus, we prove that mesoscopic 2D Ruddlesden-Popper perovskite flakes represent an effective but simple system to study the rich physics of exciton-polaritons at room temperature.
引用
收藏
页码:4065 / 4075
页数:11
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