纳米激光器
激光阈值
材料科学
光电子学
量子点
聚二甲基硅氧烷
光子学
波长
激光器
共振(粒子物理)
纳米光子学
纳米光刻
弯曲
纳米棒
纳米压印光刻
灵活性(工程)
光学
纳米技术
纳米结构
低语长廊波浪
纳米传感器
激光线宽
光子晶体
谐振器
量子点激光器
纳米尺度
等离子体子
作者
Shaobin Zheng,Qinglin Ji,Yuehua Chen,Wei Shao,Chang Guo,Bingyu Zhu,Yuehua Chen,Jingyue Yu,Shikai Deng
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-02-20
卷期号:20 (8): 7228-7237
标识
DOI:10.1021/acsnano.5c20560
摘要
Nanostructure lattices offer a compact platform for small, coherent light sources but suffer from compromised emission stability under mechanical deformation. In this study, we demonstrate a flexible nanolaser comprising a perovskite quantum dot (QD) film and a polydimethylsiloxane (PDMS) nanohole array filled with QDs, which maintains robust lasing performance with stable wavelength and intensity under bending and stretching. This nanolaser, fabricated via nanoimprint and QD drop-casting processes, leverages guided-mode resonance (GMR) for lasing emission at 532 nm with a threshold down to ∼15 μJ/cm2. Moreover, we engineer the PDMS nanohole array (Poisson’s ratio ≈0.5) to ensure that the nanolaser has a stable effective period and resonance wavelength under deformation. Thus, the nanolaser can maintain a stable wavelength under up to 15% tensile strain and over 1000 stretching cycles under 5% strain. By utilizing the flexibility and normal emission to local array structures of the nanolaser, emission-direction steering over a ±50° range, rotation-rate measurement, and beam-angle control are demonstrated. Facial recognition is proposed as one of the potential applications of flexible, stable nanolasers, and wider employment in human–computer interactions and embodied intelligence scenarios is expected.
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