激光阈值
材料科学
圆极化
激光器
光电子学
光学
受激发射
光学材料
光学腔
极化(电化学)
实现(概率)
X射线磁圆二色性
放大自发辐射
青色
Crystal(编程语言)
多态性(计算机科学)
晶体结构
发光
线极化
发射光谱
作者
Shizhe Ren,Zhonghao Zhou,Fanxing Meng,Bo Peng,X Q Dong,Zehua He,Yi Zhou,Kun Hu,Weiyi Li,Chunhuan Zhang,Jiannian Yao,Haiyun Dong,Y ZHAO
摘要
ABSTRACT Circularly polarized lasers play important roles in chiroptical technologies. Organic materials have the potential for exploring multi‐color circularly polarized laser emission owing to their large diversity. However, the realization of multi‐color organic circularly polarized lasing generally requires sophisticated molecular design and time‐consuming synthesis. Here, we propose a crystal polymorphism strategy to realize multi‐color circularly polarized lasing. Three kinds of polymorphic microcrystals are synthesized from one organic compound by controlling the liquid‐phase molecular self‐assembly. The polymorphic microcrystals combine the cavity effect with multi‐color optical gain and chiroptical activity, which enable violet‐blue, blue, and cyan circularly polarized laser emission. This work establishes an organic polymorphic material platform for exploring multi‐color circularly polarized lasers.
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