Wu Ji-Liang, Huang Ya-Li, Yang Yue-De, Xiao Jin-Long, Qin Guan-Shi, Huang Yong-Zhen
Appl Opt. 2020 Jan 10;59(2):363-369. doi: 10.1364/AO.59.000363.
A multiwavelength Brillouin fiber laser (BFL) is demonstrated using a 1.55-µm AlGaInAs/InP microcavity laser as a seed source. The combination of a nonlinear fiber cavity and a feedback loop leads to multiwavelength generation with a channel spacing of double-Brillouin-frequency assisted by cavity-enhanced four-wave mixing. The amplified output of a dual-mode lasing square microcavity laser with a wavelength interval of 1.5 nm is applied as the pump source for the broadband multiwavelength generation. A wideband multiwavelength BFL covering from 1490 nm to 1590 nm is successfully generated at an optimized pump power of 25 dBm and a feedback power of -17.2. The power stability of 0.82 dB over a 60 min duration of the multiwavelength BFL can satisfy the demands for the optical fiber sensing and microwave photonic systems.
利用一个1.55微米的AlGaInAs/InP微腔激光器作为种子源,演示了一种多波长布里渊光纤激光器(BFL)。非线性光纤腔和反馈回路的结合,通过腔增强四波混频辅助,实现了具有双布里渊频率通道间隔的多波长产生。具有1.5纳米波长间隔的双模激光方形微腔激光器的放大输出被用作宽带多波长产生的泵浦源。在25 dBm的优化泵浦功率和-17.2的反馈功率下,成功产生了覆盖1490纳米至1590纳米的宽带多波长BFL。多波长BFL在60分钟持续时间内0.82 dB的功率稳定性能够满足光纤传感和微波光子系统的需求。