激光阈值
激光线宽
光电子学
光学
材料科学
激光器
光子学
干扰(通信)
波长
增益开关
梁(结构)
控制重构
半导体激光器理论
物理
谐振器
受激发射
激发
纳米激光器
纳米光刻
光开关
透射率
纳米光子学
光通信
超材料
光子集成电路
光抽运
电子束光刻
模式(计算机接口)
作者
Yun Meng,Wenbin Wang,Bonan Zhu,Shuhao Si,Liangcai Wu,Robert E. Simpson,Yangjian Cai
摘要
Dynamic reconfiguration of bound-state-in-the-continuum (BIC) microlasers typically involves mode hopping or angle switching, which compromises mode consistency and beam topology. Here, we demonstrate a phase-change Sb2S3 nanodisk metasurface microlaser that enables nonvolatile multilevel wavelength programming while preserving the same symmetry-protected quasi-BIC lasing mode and surface-normal emission. The device exhibits vertical lasing with a linewidth of ∼0.4 nm and Q-factors exceeding 3000. By laser writing of amorphous, intermediate, and crystalline states, the lasing wavelength is tuned from 881 to 889 nm without optical-mode switching or beam steering. Polarization-resolved far-field measurements together with interference analysis confirm vortex-beam emission with a conserved topological charge (q = −1) throughout the programmed tuning sequence. These results establish Sb2S3 quasi-BIC metasurfaces as a compact platform for programmable structured-light microlasers and integrated photonic systems.
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