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首页> 外文期刊>ACS applied materials & interfaces >Exciton-Polariton Properties in Planar Microcavity of Millimeter-Sized Two-Dimensional Perovskite Sheet
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Exciton-Polariton Properties in Planar Microcavity of Millimeter-Sized Two-Dimensional Perovskite Sheet

机译:毫米尺寸二维钙钛矿板平面微透槽中的激子 - Parariton属性

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摘要

In this work, the self-organized two-dimensional (2D) perovskite crystal sheet was synthesized for exciton-polariton studies. The layered 2D perovskite sheets naturally form Fabry- Perot (F-P) optical cavities and exhibit evident cavity polariton modes. In the region of F-P cavity polariton modes, an excitonpolariton is formed by the superposition of strongly coupled exciton and photon states and the decreased spacing between two adjacent oscillation modes can be well explained by the formation of exciton polarities. Rabi splitting energy (Omega) evaluated from the energy- wavevector (E-k) dispersion relation of exciton-polariton coupling was about 259 +/- 10 meV. For edge emissions of the laminated structure, the thickness-dependent quantum well exerts great influence on the band-gap absorption and emission. This work studies exciton-polariton properties in layered 2D perovskite sheets, making it possible application for polariton devices in the strong light-matter interaction region.
机译:在这项工作中,为Exciton-Polariton研究合成了自组织的二维(2D)钙钛矿晶片。 层状的2D钙钛矿片自然形成法布里 - 珀罗(F-P)光学腔并表现出明显的腔极化型模式。 在F-P腔极化型模式的区域中,通过强烈耦合的激子和光子状态的叠加形成Excitonpolariton,并且通过形成激子极性的形成可以很好地解释两个相邻振荡模式之间的间距降低。 Rabi分裂能量(OMEGA)从激子 - 极性偶联的能量波动(E-K)分散关系中评估的约259 +/- 10meV。 对于层压结构的边缘排放,厚度依赖量子阱对带间隙吸收和排放产生了很大的影响。 这项工作研究了层叠层2D钙钛矿板中的Exciton-Polariton属性,可以在强光物相互作用区域中应用Polariton装置。

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