Study on the high-power DFB semiconductor laser based on sampled moiré grating

Shengping Liu, Yuxin Ma, Min Chen, Yong Zhao, Yue-chun Shi, Xiangfei Chen
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Abstract

We review a new kind of distributed feedback (DFB) semiconductor laser based on sampled moiré grating (SMG). It has some significant advantages such as good singlelongitudinal-mode (SLM) operation, suppressing spatial hole burning and compact structure. A four-channel DFB laser array based on SMG has been experimentally demonstrated. When the injected current exceeds 400 mA, the output power of the SMG-DFB laser array is more than 120 mW. However, the random facet phase induced by facet coatings can decrease the SLM yield and change the lasing wavelength. We proposed a method to improve the single mode stability via replacing the high-reflectivity coating with anti-reflection coated integrated grating reflector. The proposed high-power SLM DFB semiconductor laser and laser array may be beneficial for the silicon photonic chips that suffer from high light scattering loss.
基于采样莫尔光栅的大功率DFB半导体激光器的研究
介绍了一种基于采样莫尔光栅(SMG)的分布式反馈半导体激光器。它具有良好的单纵模(SLM)工作性能、抑制空间孔烧、结构紧凑等显著优点。实验证明了一种基于SMG的四通道DFB激光阵列。当注入电流超过400 mA时,SMG-DFB激光阵列的输出功率大于120 mW。然而,小面涂层引起的随机小面相位会降低SLM的产率并改变激光波长。提出了一种用增透涂层集成光栅反射器代替高反射率涂层来提高单模稳定性的方法。所提出的高功率SLM DFB半导体激光器和激光阵列可能有利于高光散射损耗的硅光子芯片。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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