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基于纳米线光学腔的具有按需激射波长的表面发射激光器架构。

Architecture for Surface-Emitting Lasers with On-Demand Lasing Wavelength by Nanowire Optical Cavities.

作者信息

Vafadar Mohammad Fazel, Zhao Songrui

机构信息

Department of Electrical and Computer Engineering, McGill University, 3480 University Street, Montreal, Quebec H3A 0E9, Canada.

出版信息

ACS Nano. 2024 Jun 4;18(22):14290-14297. doi: 10.1021/acsnano.3c13186. Epub 2024 May 20.

Abstract

Despite the importance and exciting progress of surface-emitting (SE) semiconductor lasers, we have limited choices of lasing wavelength even today. From an application viewpoint, it is desirable to have an architecture that can allow SE lasing in a wide spectral range, based on the need of applications. Herein, we demonstrate a path for SE lasers with lasing wavelength on demand by exploiting III-nitride nanowire optical cavities formed by low-temperature selective area epitaxy (SAE), combined with fine-tuning of substrate patterns and photonic bands. Moreover, in this study, we focus on the device demonstration in the ultraviolet (UV) spectral range, considering the severe lag in developing SE lasers in the UV wavelength range compared to longer wavelengths, e.g., near-infrared (NIR), as well as the potential applications enabled by UV lasers such as solar blind optical wireless communications. Ultralow threshold wavelength-tunable SE UV lasing is achieved by optical pumping. Moreover, SE UV lasing under direct electric current injection is also achieved. This study not only represents an important step in the journey of SE UV laser development but, more importantly, it lays the ground for SE lasers with lasing wavelength on demand, broadly from NIR to UV.

摘要

尽管表面发射(SE)半导体激光器具有重要意义且取得了令人兴奋的进展,但即便在如今,我们可选择的激光波长仍很有限。从应用角度来看,基于应用需求,期望有一种架构能够实现宽光谱范围内的SE激光发射。在此,我们通过利用低温选择性区域外延(SAE)形成的III族氮化物纳米线光学腔,并结合衬底图案和光子带的微调,展示了一种实现按需激光波长的SE激光器的途径。此外,在本研究中,考虑到与较长波长(如近红外(NIR))相比,紫外(UV)波长范围内SE激光器的发展严重滞后,以及UV激光器所带来的潜在应用,如日盲光无线通信,我们将重点放在UV光谱范围内的器件演示上。通过光泵浦实现了超低阈值波长可调谐的SE紫外激光发射。此外,还实现了直流注入下的SE紫外激光发射。本研究不仅是SE紫外激光发展历程中的重要一步,更重要的是,它为按需激光波长的SE激光器奠定了基础,涵盖从近红外到紫外的广泛光谱范围。

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