论文标题
卤化物钙钛矿微腔中的电泵送偏振激子 - 果龙
Electrically pumped polarized exciton-polaritons in a halide perovskite microcavity
论文作者
论文摘要
激元偏极,在半导体微腔中具有部分光的综合粒子,以巨大的现象(例如偏振子凝结和量子仿真)进行了广泛研究。这些现象最近在温度升高至室温下的新兴铅卤化物钙壶岩中发现了这些现象。为了将这些发现推广到实际应用中,一个关键的要求是实现电泵送的激子 - 果龙。但是,尚未通过实验实现带有钙钛矿的电泵发光设备。在这里,我们设计了一种新方法,将设备与微腔相结合,并报告第一个卤化物钙钛矿北极星发光装置。具体而言,该设备基于CSPBBR3电容结构,该结构可以从相同的电极注入电子和孔,有利于形成激子的形成,并同时维持微博的高质量。此外,由于CSPBBR3微板酸盐的光学双折射,已经证明了高极化选择性极化的排放。这项工作为实现实用的极化设备(例如用于信息通信的高速发光设备)和基于钙钛矿的无情电泵送激光器提供了铺平的道路。
Exciton polaritons, hybrid quasiparticles with part-light part-matter nature in semiconductor microcavities, are extensively investigated for striking phenomena such as polariton condensation and quantum emulation. These phenomena have recently been discovered in emerging lead halide perovskites at elevated temperatures up to room temperature. For advancing these discoveries into practical applications, one critical requirement is the realization of electrically pumped exciton-polaritons. However, electrically pumped polariton light-emitting devices with perovskites have not yet been achieved experimentally. Here, we devise a new method to combine the device with the microcavity and report the first halide perovskite polariton light-emitting device. Specifically, the device is based on a CsPbBr3 capacitive structure, which can inject the electrons and holes from the same electrode, conducive to the formation of excitons and simultaneously maintaining the high quality of the microcavity. In addition, highly polarization-selective polariton emissions have been demonstrated due to the optical birefringence in the CsPbBr3 microplate. This work paves the way for realizing practical polaritonic devices such as high-speed light-emitting devices for information communications and inversionless electrically pumped lasers based on perovskites.