激光阈值
光学
光电子学
材料科学
罗丹明6G
激光器
多模光纤
纳米光子学
带宽(计算)
谐振器
半导体激光器理论
瑞利散射
光子学
低语长廊波浪
衍射
受激发射
染料激光器
包层(金属加工)
光子晶体
波导管
折射率
级联
分布布拉格反射激光器
超辐射
增益开关
可调谐激光器
物理
衍射光栅
纳米激光器
作者
Ayesheh Bashiri,Aleksandr Vaskin,Katsuya Tanaka,Muyi Yang,T. Pertsch,Isabelle Staude
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-03-20
卷期号:26 (12): 4111-4118
标识
DOI:10.1021/acs.nanolett.5c06344
摘要
High Resolution Image Download MS PowerPoint Slide Spectrally engineered multifrequency nanolasers are highly desirable for on-chip photonics, multiplexed biosensing, and display technologies, yet achieving them within a compact platform remains challenging. Here, we demonstrate multimode lasing from symmetry-broken TiO 2 metasurfaces integrated with an SU8 slab waveguide containing rhodamine 6G. By coengineering guided-mode resonances, surface lattice resonances near Rayleigh anomalies, and quasi-bound states in the continuum, we realize complementary high-Q feedback pathways that overlap with the gain spectrum. The lasing emission direction is tailored through outcoupling via second-order Bragg diffraction and Rayleigh anomaly conditions, supporting both normal and oblique emission. Experiments reveal discrete lasing outputs across ≈100 nm bandwidth (548–648 nm), spanning the full rhodamine 6G emission band, with thresholds as low as ∼7 nJ (35.7 μJ/cm 2 ) and up to four concurrent lasing peaks from a single device. These results establish a metasurface-dye platform for multifrequency and angle-selective lasing, opening new opportunities for compact, multifunctional nanophotonic sources.
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