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高性能多波长氮化镓砷单纳米线激光器

High-Performance Multiwavelength GaNAs Single Nanowire Lasers.

作者信息

Jansson Mattias, Nosenko Valentyna V, Torigoe Yuto, Nakama Kaito, Yukimune Mitsuki, Higo Akio, Ishikawa Fumitaro, Chen Weimin M, Buyanova Irina A

机构信息

Department of Physics, Chemistry and Biology, Linköping University, SE-58183 Linköping, Sweden.

Graduate School of Science and Engineering, Ehime University, Matsuyama 790-8577, Japan.

出版信息

ACS Nano. 2024 Jan 16;18(2):1477-1484. doi: 10.1021/acsnano.3c07980. Epub 2024 Jan 2.

Abstract

In this study, we report a significant enhancement in the performance of GaNAs-based single nanowire lasers through optimization of growth conditions, leading to a lower lasing threshold and higher operation temperatures. Our analysis reveals that these improvements in the laser performance can be attributed to a decrease in the density of localized states within the material. Furthermore, we demonstrate that owing to their excellent nonlinear optical properties, these nanowires support self-frequency conversion of the stimulated emission through second harmonic generation (SHG) and sum-frequency generation (SFG), providing coherent light emission in the cyan-green range. Mode-specific differences in the self-conversion efficiency are revealed and explained by differences in the light extraction efficiency of the converted light caused by the electric field distribution of the fundamental modes. Our work, therefore, facilitates the design and development of multiwavelength coherent light generation and higher-temperature operation of GaNAs nanowire lasers, which will be useful in the fields of optical communications, sensing, and nanophotonics.

摘要

在本研究中,我们报告了通过优化生长条件,基于GaNAs的单纳米线激光器的性能有了显著提升,从而实现了更低的激光阈值和更高的工作温度。我们的分析表明,激光性能的这些改善可归因于材料中局域态密度的降低。此外,我们证明,由于其优异的非线性光学特性,这些纳米线通过二次谐波产生(SHG)和和频产生(SFG)支持受激发射的自频率转换,从而在蓝绿色范围内提供相干光发射。通过基模电场分布引起的转换光的光提取效率差异,揭示并解释了自转换效率中的模式特异性差异。因此,我们的工作有助于GaNAs纳米线激光器的多波长相干光产生和更高温度工作的设计与开发,这将在光通信、传感和纳米光子学领域中发挥作用。

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