激光器
光学
横模
半导体激光器理论
材料科学
光电子学
光纤布拉格光栅
分布反馈激光器
栅栏
横截面
共振(粒子物理)
半导体
物理
原子物理学
结构工程
工程类
作者
Mengmeng Xu,Feng Wang,Shenghong Xie,Xintao Zeng,Chen Qiang,Xiangfei Chen,Yuechun Shi,Yong Zhao
摘要
A three-section dual-transverse mode hybrid resonant laser has been successfully developed on the InP platform, utilizing a 2D sampling grating. This laser comprises an active section with a π phase-shifted anti-symmetric Bragg grating (π-ASBG) and two passive sections with uniform Bragg gratings (UBGs). With this design, it enables the simultaneous and stable emission of both the fundamental transverse electric mode (TE0) and the first-order transverse electric mode (TE1). The physical mechanism of dual-transverse mode hybrid resonance in the cavity of a semiconductor laser is analyzed, based on the coupled-mode theory. The experimental results indicate that the laser consistently maintains an output wavelength of 1549 nm, achieving side-mode suppression ratios (SMSR) of 38 dBand30 dB, respectively, under the emission of the TE0 mode and the TE1 mode. Therefore, as the transverse mode tunable light source, the laser may benefit the future mode division multiplexing (MDM) systems for more reconfigurability and flexibility.
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