战泽宇, 陈吉祥, 刘萌, 罗爱平, 徐文成, 罗智超. 1.7 μm超快光纤激光器研究进展(特邀)[J]. 红外与激光工程, 2022, 51(1): 20210850. DOI: 10.3788/IRLA20210850
引用本文: 战泽宇, 陈吉祥, 刘萌, 罗爱平, 徐文成, 罗智超. 1.7 μm超快光纤激光器研究进展(特邀)[J]. 红外与激光工程, 2022, 51(1): 20210850. DOI: 10.3788/IRLA20210850
Zhan Zeyu, Chen Jixiang, Liu Meng, Luo Aiping, Xu Wencheng, Luo Zhichao. Recent progress of 1.7 μm ultrafast fiber lasers (Invited)[J]. Infrared and Laser Engineering, 2022, 51(1): 20210850. DOI: 10.3788/IRLA20210850
Citation: Zhan Zeyu, Chen Jixiang, Liu Meng, Luo Aiping, Xu Wencheng, Luo Zhichao. Recent progress of 1.7 μm ultrafast fiber lasers (Invited)[J]. Infrared and Laser Engineering, 2022, 51(1): 20210850. DOI: 10.3788/IRLA20210850

1.7 μm超快光纤激光器研究进展(特邀)

Recent progress of 1.7 μm ultrafast fiber lasers (Invited)

  • 摘要: 超快光纤激光器具有紧凑性高、光束质量佳、散热性好等优点,是一种极具发展潜力的激光光源。工作波长作为超快光纤激光器的重要参数,在一定程度上决定了激光器的应用领域。近年来,得益于1.7 μm波段的独特光谱特性,1.7 μm波段超快光纤激光器在生物医学、聚合物加工、光学成像等领域具有重要的应用价值。因此,研制高性能的1.7 μm波段超快光纤激光器成为激光领域的研究热点之一。文中综述了近期1.7 μm波段超快光纤激光器的研究进展,对目前获得1.7 μm波段超短脉冲的不同方式进行总结,分析其技术特点;同时,介绍了笔者所在课题组报道的1.7 μm波段耗散孤子超快光纤激光器及其放大系统的研究成果,概述了其工作原理、技术难点;最后,对1.7 μm波段超快光纤激光的应用前景及发展趋势进行了展望。

     

    Abstract: With the advantages of inherent compactness, high beam quality and excellent heat dissipation, ultrafast fiber lasers have already shown their huge potential in various scientific and industrial applications. In fact, the operating wavelength of the ultrafast fiber laser is critical for specific applications. In recent years, thanks to the unique spectral characteristics, 1.7 μm ultrafast fiber lasers have unparalleled applications in biomedicine, polymer processing, optical imaging and other fields. Therefore, developing high performance ultrafast fiber lasers in the 1.7 μm band has become a research hotspot in the laser community. In this paper, the progress of 1.7 μm ultrafast fiber lasers was reviewed and a comprehensive overview of the different methods enabling ultrafast generation at 1.7 μm waveband was given. The latest advances in 1.7 μm dissipative soliton fiber laser and chirped pulse amplification system reported by our group were introduced. The principles and technical challenges were also outlined. Finally, the application prospect and development tendency of 1.7 μm ultrafast fiber laser were prospected.

     

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