Wang Yafei, Zhang Jing, Wen Junpeng, Qiu Baotian, Qiu Jianrong, Yang Zhongmin, Wei Xiaoming, Dong Guoping
Opt Express. 2022 Aug 15;30(17):30870-30880. doi: 10.1364/OE.468607.
Fiber lasers, owing to the advantages of excellent beam quality and unique robustness, play a crucial role in lots of fields in modern society. Developing optical glass fibers with superior performance is of fundamental importance for wide applications of fiber lasers. Here, a new Nd-doped phosphate single-mode fiber that enables a high gain at 0.9 µm is designed and fabricated. Compared to previous Nd-doped silica fibers, the developed phosphate fiber exhibits a significant gain promotion, up to 2.7 dB cm at 915 nm. Configuring in a continuous-wave fiber laser, this phosphate fiber can provide a slope efficiency of 11.2% in a length of only 4.5 cm, about 6 times higher than that of Nd-doped silica fiber. To showcase its uniqueness, an ultrafast fiber laser with ultrashort cavity is constructed, such that an ultrashort pulse train with a fundamental repetition rate of up to 1.2 GHz is successfully generated. To the best of our knowledge, this is the highest fundamental repetition rate for mode-locked fiber lasers at this wavelength range - two orders of magnitude higher than that of prior works. These results indicate that this Nd-doped phosphate fiber is an effective gain medium for fiber amplifiers and lasers at 0.9 µm, and it is promising for two-photon biophotonics that requires long-term operation with low phototoxicity.
由于具有出色的光束质量和独特的稳健性等优点,光纤激光器在现代社会的许多领域发挥着至关重要的作用。开发具有卓越性能的光学玻璃纤维对于光纤激光器的广泛应用至关重要。在此,设计并制造了一种新型的掺钕磷酸盐单模光纤,其在0.9 µm波长处能实现高增益。与先前的掺钕石英光纤相比,所开发的磷酸盐光纤展现出显著的增益提升,在915 nm波长处增益高达2.7 dB/cm。在连续波光纤激光器中配置这种磷酸盐光纤,在仅4.5 cm的长度内可提供11.2%的斜率效率,约为掺钕石英光纤的6倍。为展示其独特性,构建了一个具有超短腔的超快光纤激光器,从而成功产生了具有高达1.2 GHz基本重复频率的超短脉冲序列。据我们所知,这是该波长范围内锁模光纤激光器的最高基本重复频率——比先前的工作高出两个数量级。这些结果表明,这种掺钕磷酸盐光纤是0.9 µm波长处光纤放大器和激光器的有效增益介质,并且对于需要长期低光毒性操作的双光子生物光子学具有广阔前景。