Luo Saiyu, Gu Han, Tang Xiao, Geng Xiang, Li Li, Cai Zhiping
Opt Lett. 2022 Mar 1;47(5):1157-1160. doi: 10.1364/OL.451845.
Ultrafast yellow lasers are in high demand in recent biomedical and medical applications; however, direct emission of mode-locked pulses in yellow at the high-power level still presents a huge technical challenge to date. By integrating the nonlinear polarization rotation (NPR) scheme into a Dy:ZBLAN fiber laser, dissipative soliton resonance pulses at ∼575 nm are demonstrated for the first time, to the best of our knowledge. The average output power reaches ∼240 mW at maximum, which is an improvement of almost two orders of magnitude over those reported from the latest mode-locked visible fiber lasers. The laser scheme combines a piece of large-core Dy:ZBLAN gain fiber and free-space NPR components designated at the yellow bandwidth. The maximal pulse energy is 2.4 nJ at the repetition rate of ∼100 MHz and the minimal pulse duration is 83 ps. The achieved wavelength of 575 nm is the shortest ever reached from a fiber-based mode-locked laser to date.
超快黄色激光器在近期的生物医学和医疗应用中需求旺盛;然而,迄今为止,在高功率水平下直接产生锁模黄色脉冲仍然是一项巨大的技术挑战。据我们所知,通过将非线性偏振旋转(NPR)方案集成到镝掺杂氟化物玻璃(Dy:ZBLAN)光纤激光器中,首次实现了波长约为575 nm的耗散孤子共振脉冲。平均输出功率最高达到约240 mW,相较于最新报道的锁模可见光纤激光器,功率提升了近两个数量级。该激光方案采用了一段大芯径的Dy:ZBLAN增益光纤以及针对黄色带宽设计的自由空间NPR组件。在重复频率约为100 MHz时,最大脉冲能量为2.4 nJ,最小脉冲持续时间为83 ps。所实现的575 nm波长是迄今为止基于光纤的锁模激光器所达到的最短波长。