Wu Tianyi, Yang Linyong, Dou Zhiyuan, Yin Ke, He Xuan, Zhang Bin, Hou Jing
Opt Lett. 2019 May 1;44(9):2378-2381. doi: 10.1364/OL.44.002378.
A 10-watt-level mid-infrared supercontinuum (SC) spanning 0.8-4.7 μm with ultra-high-power conversion efficiency is generated in a piece of fluoroindate (InF) fiber. The pump laser is a master oscillator power amplifier system seeded by a mode-locked fiber laser operating at 1956 nm with pulse repetition rate and pulse duration of 33 MHz and 60 ps, respectively. A piece of InF fiber is fusion spliced to the output end of the pump light source with a low fusion splicing loss of 0.12 dB. An endcap made of multimode aluminum fluoride fiber is used to protect the fiber tip from possible optical or thermal damage. Benefiting from the fiber endcap as well as the low-loss splicing joint between silica and InF fiber, high-power SC generation is achieved with maximal output power of 11.3 W. Furthermore, the long wavelength edge of the obtained SC spectrum is extended to 4.7 μm. This Letter, to the best of our knowledge, not only demonstrates the first 10-watt-level SC generation in InF fibers, but also achieves record power conversion efficiency of 66.5% among reported 10-watt-level fluoride-fiber-based SC laser sources.
在一段氟铟酸盐(InF)光纤中产生了一个10瓦级的中红外超连续谱(SC),其波长范围为0.8 - 4.7μm,具有超高的功率转换效率。泵浦激光器是一个主振荡功率放大器系统,由一个工作在1956nm的锁模光纤激光器种子源注入,脉冲重复频率和脉冲持续时间分别为33MHz和60ps。一段InF光纤与泵浦光源的输出端熔接,熔接损耗低至0.12dB。一个由多模氟化铝光纤制成的端帽用于保护光纤尖端免受可能的光学或热损伤。得益于光纤端帽以及石英和InF光纤之间的低损耗熔接接头,实现了高功率超连续谱的产生,最大输出功率为11.3W。此外,所获得的超连续谱的长波长边缘扩展到了4.7μm。据我们所知,这封信不仅展示了在InF光纤中首次产生10瓦级的超连续谱,而且在已报道的基于氟化物光纤的10瓦级超连续谱激光源中实现了66.5%的创纪录功率转换效率。