Hu Bo, Chen Lu, Yang Xuemei, He Linzhen, Li Yang, Li Wenlong, Wu Han, Liang Houkun
Opt Lett. 2024 Feb 15;49(4):1101-1104. doi: 10.1364/OL.517118.
We report the continuous-wave (cw) difference-frequency generation (DFG) in a ZnGeP (ZGP) crystal that produces tunable long-wavelength infrared (LWIR) lasing. Particularly, we experimentally demonstrate the feasibility to drive DFG in ZGP by all-fiber near-infrared fiber lasers consisting of a 1.3 µm tunable cw random Raman fiber laser (RRFL) and a 1.5 µm erbium-doped fiber amplifier seeded by a tunable distributed feedback (DFB) laser, making the whole system compact and robust. As a result, the demonstrated LWIR DFG presents a broadband spectral tuning range spanning from 9.5 to 11.5 µm, and the output powers in the spectral range of 9.5-11 µm are larger than 40 µW pumped by watt-level fiber lasers. Meanwhile, as a typical application, a proof-of-concept demonstration of gas sensing of SF is executed based on the generated cw LWIR source. Our work demonstrates that the combination of ZGP crystal and fiber lasers can provide an effective and robust approach for the generation of cw LWIR radiation with useful power and broadband wavelength tunability.
我们报道了在ZnGeP(ZGP)晶体中产生可调谐长波长红外(LWIR)激光的连续波(cw)差频产生(DFG)。特别地,我们通过由1.3μm可调谐连续波随机拉曼光纤激光器(RRFL)和由可调谐分布反馈(DFB)激光器种子注入的1.5μm掺铒光纤放大器组成的全光纤近红外光纤激光器,实验证明了在ZGP中驱动DFG的可行性,使整个系统紧凑且坚固。结果,所展示的LWIR DFG呈现出从9.5到11.5μm的宽带光谱调谐范围,并且在9.5 - 11μm光谱范围内的输出功率在瓦级光纤激光器泵浦下大于40μW。同时,作为一个典型应用,基于所产生的连续波LWIR源进行了SF气体传感的概念验证演示。我们的工作表明,ZGP晶体与光纤激光器的结合可以为产生具有有用功率和宽带波长可调性的连续波LWIR辐射提供一种有效且坚固的方法。