Zhang Xutao, Yi Ruixuan, Gagrani Nikita, Li Ziyuan, Zhang Fanlu, Gan Xuetao, Yao Xiaomei, Yuan Xiaoming, Wang Naiyin, Zhao Jianlin, Chen Pingping, Lu Wei, Fu Lan, Tan Hark Hoe, Jagadish Chennupati
Key Laboratory of Light Field Manipulation and Information Acquisition, Ministry of Industry and Information Technology, and Shaanxi Key Laboratory of Optical Information Technology, School of Physical Science and Technology, Northwestern Polytechnical University, Xi'an 710129, China.
Department of Electronic Materials Engineering, Research School of Physics, The Australian National University, Canberra, Australian Capital Territory 2601, Australia.
ACS Nano. 2021 May 25;15(5):9126-9133. doi: 10.1021/acsnano.1c02425. Epub 2021 May 10.
We present single-mode nanowire (NW) lasers with an ultralow threshold in the near-infrared spectral range. To ensure the single-mode operation, the NW diameter and length are reduced specifically to minimize the longitudinal and transverse modes of the NW cavity. Increased optical losses and reduced gain volume by the dimension reduction are compensated by an excellent NW morphology and InGaAs/GaAs multiquantum disks. At 5 K, a threshold low as 1.6 μJ/cm per pulse is achieved with a resulting quality factor exceeding 6400. By further passivating the NW with an AlGaAs shell to suppress surface nonradiative recombination, single-mode lasing operation is obtained with a threshold of only 48 μJ/cm per pulse at room temperature with a high characteristic temperature of 223 K and power output of ∼0.9 μW. These single-mode, ultralow threshold, high power output NW lasers are promising for the development of near-infrared nanoscale coherent light sources for integrated photonic circuits, sensing, and spectroscopy.
我们展示了在近红外光谱范围内具有超低阈值的单模纳米线(NW)激光器。为确保单模运行,特意减小了NW的直径和长度,以最小化NW腔的纵向和横向模式。尺寸减小导致的光损耗增加和增益体积减小,通过优异的NW形态和InGaAs/GaAs多量子盘得到了补偿。在5 K时,实现了低至每脉冲1.6 μJ/cm²的阈值,品质因数超过6400。通过用AlGaAs壳进一步钝化NW以抑制表面非辐射复合,在室温下以仅48 μJ/cm²的阈值获得了单模激光运行,特征温度高达223 K,功率输出约为0.9 μW。这些单模、超低阈值、高功率输出的NW激光器有望用于开发用于集成光子电路、传感和光谱学的近红外纳米级相干光源。