中国物理B ›› 2025, Vol. 34 ›› Issue (6): 64202-064202.doi: 10.1088/1674-1056/adc664
Mengyuan Liu(刘梦媛)1,†, Yechao Han(韩烨超)2,3,†, Qi Liu(刘齐)1,3, Hao Teng(滕浩)3, Xiwei Huang(黄玺玮)1, Xiaowei Xing(邢笑伟)1,3, Xiangyu Qiao(乔向宇)1, Guojing Hu(胡国静)3, Xiao Lin(林晓)2,‡, Haitao Yang(杨海涛)3,§, Zhiyi Wei(魏志义)3,5, and Wenjun Liu(刘文军)1,4,¶
Mengyuan Liu(刘梦媛)1,†, Yechao Han(韩烨超)2,3,†, Qi Liu(刘齐)1,3, Hao Teng(滕浩)3, Xiwei Huang(黄玺玮)1, Xiaowei Xing(邢笑伟)1,3, Xiangyu Qiao(乔向宇)1, Guojing Hu(胡国静)3, Xiao Lin(林晓)2,‡, Haitao Yang(杨海涛)3,§, Zhiyi Wei(魏志义)3,5, and Wenjun Liu(刘文军)1,4,¶
摘要: Recently, Bi$_{4}$Br$_{4}$ is proved to be a member of topological insulators and is expected to be a promising candidate for ultrafast photonic device. However, experimental studies on the nonlinear optical properties of Bi$_{4}$Br$_{4}$ are limited, and its broadband absorption capabilities have not been validated. This study presents the first preparation of Bi$_{4}$Br$_{4}$ samples using the chemical vapor transport method, resulting in a saturable absorber (SA) with a high modulation depth (46.23%) and low non-saturable loss (6.5%). The optical nonlinearity ranks among the best in similar studies. Additionally, this work applies Bi$_{4}$Br$_{4}$-SA for the first time in 1-μm fiber laser, developing a ring-cavity mode-locked fiber laser with a central wavelength of 1029.79 nm, a pulse duration of 442 fs, and a maximum output power of 90.83 mW. And a linear-cavity mode-locked fiber laser with a central wavelength of 1031.24 nm, a pulse duration of 511 fs, and a maximum output power of 92.81 mW is constructed. It is worth noting that the optical-to-optical conversion efficiency has reached about 11.54% and 33.58%. This study verifies Bi$_{4}$Br$_{4}$-SA's modulation effectiveness for 1-μm pulse lasers and provides a powerful reference for the design of high-efficiency fiber lasers.
中图分类号: (Fiber lasers)