纳米激光器
激光阈值
多极展开
光电子学
纳米光子学
激光器
光子学
激发
纳米线
自发辐射
物理
材料科学
光学
波长
量子力学
作者
Thanh Xuan Hoang,Son Tung Ha,Zhenying Pan,Wee Kee Phua,Ramón Paniagua‐Domínguez,Ching Eng Png,Hong‐Son Chu,Arseniy I. Kuznetsov
出处
期刊:Nano Letters
[American Chemical Society]
日期:2020-06-30
卷期号:20 (8): 5655-5661
被引量:50
标识
DOI:10.1021/acs.nanolett.0c00403
摘要
A highly efficient nanocavity formed by optically coupled nanostructures is achieved by optimization of the collective Mie resonances in a one-dimensional array of semiconductor nanoparticles. Analysis of quasi-normal multipole modes enables us to reveal the close relation between the collective Mie resonances and Van Hove singularities. On the basis of these concepts, we experimentally demonstrate a directional GaAs nanolaser at cryogenic temperatures with well-defined, in-plane emission, which, moreover, can be controlled by selective excitation. The lasing threshold is shown to be significantly reduced by optimizing the interparticle gap such that the optimal near-field confinement is achieved at a resonant wavelength corresponding to the highest gain of GaAs. We show that the lasing performance of this nanolaser is orders of magnitude better than a nanowire-based laser of the same dimensions. The present work provides design guidelines for high performance in-plane emission nanolasers, which may find applications in future photonic integrated circuits.
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