激光阈值
材料科学
低语长廊波浪
激光器
光电子学
增益开关
谐振器
有源激光介质
极化(电化学)
各向异性
光子学
纳米材料
光抽运
量子点激光器
光学
纳秒
半导体激光器理论
色散(光学)
光子晶体
放大自发辐射
Q系数
等离子体子
量子点
光场
纳米光子学
介观物理学
激光线宽
自发辐射
量子阱
纳米技术
作者
Rui Duan,Zitong Zhang,Lian Xiao,Xiaoxu Zhao,Yi Tian Thung,Lu Ding,Zheng Liu,Jun Yang,Van Duong Ta,Handong Sun
标识
DOI:10.1002/adma.202108884
摘要
Abstract The realization of efficient on‐chip microlasers with scalable fabrication, ultralow threshold, and stable single‐frequency operation is always desired for a wide range of miniaturized photonic systems. Herein, an effective way to fabricate nanostructures‐ whispering‐gallery‐mode (WGM) lasers by drop‐casting CdSe/CdS@Cd 1− x Zn x S core/buffer‐shell@graded‐shell nanoplatelets (NPLs) dispersion onto silica microspheres is presented. Benefiting from the excellent gain properties from the interface engineered core/hybrid shell NPLs and high‐quality factor WGM resonator from excellent optical field confinement, the proposed room‐temperature NPLs‐WGM microlasers show a record‐low lasing threshold of 3.26 µJ cm −2 under nanosecond laser pumping among all colloidal NPLs‐based lasing demonstrations. The presence of sharp discrete transverse electric‐ and magnetic‐mode spikes, the inversely proportional dependence of the free spectra range on microsphere sizes and the polarization anisotropy of laser output represent the first direct experimental evidence for NPLs‐WGM lasing nature, which is verified theoretically by the computed electric‐field distribution inside the microcavity. Remarkably, a stable single‐mode lasing output with an ultralow lasing threshold of 3.84 µJ cm −2 is achieved by the Vernier effect through evanescent field coupling. The results highlight the significance of interface engineering on the optimization of gain properties of heterostructured nanomaterials and shed light on developing future miniaturized tunable coherent light sources.
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