Yang Qiubai, Wang Yafei, Yu Chunlei, Wang Fan, Guo Mengting, Zhang Lei, Shao Chongyun, Wang Meng, Shen Hui, Qi Yunfeng, Hu Lili
Opt Express. 2023 Sep 25;31(20):33741-33752. doi: 10.1364/OE.500051.
We demonstrate a high ytterbium concentration Yb/Al/P/Ce co-doped silica fiber by conventional modified chemical vapor deposition (MCVD) technology and solution doping process. The fiber has a Yb concentration of about 2.5 wt%, and the corresponding core absorption coefficient is measured to be ∼1400 dB/m at 976 nm. The gain coefficient was measured to be approximately 1.0 dB/cm. It is found that the Yb/Al/P/Ce co-doped silica shows a lower photodarkening-induced equilibrium loss of 52 dB/m at 633 nm than the Yb/Al/P co-doped silica fiber of 117 dB/m. Using the heavily Yb3+-doped silica fiber, a compact and robust ultrashort cavity single-frequency fiber laser was achieved with a maximum output power of 75 mW and a linewidth of 14 kHz. Furthermore, a compact passively mode-locked fiber laser (MLFL) with a repetition rate of 1.23 GHz was also proposed using our developed Yb-doped fiber. The laser properties of the proposed lasers were systematically investigated, demonstrating the superior performance of this fiber in terms of photodarkening resistance and ultrashort-cavity laser application. Furthermore, utilizing an all-fiber structure based on silica-based fiber offers the significant advantage of high stability and reliability.
我们通过传统的改进化学气相沉积(MCVD)技术和溶液掺杂工艺制备了一种高镱浓度的Yb/Al/P/Ce共掺杂石英光纤。该光纤的镱浓度约为2.5 wt%,在976 nm处测得相应的纤芯吸收系数约为1400 dB/m。增益系数测得约为1.0 dB/cm。研究发现,Yb/Al/P/Ce共掺杂石英在633 nm处由光暗化引起的平衡损耗为52 dB/m,低于Yb/Al/P共掺杂石英光纤的117 dB/m。利用重镱掺杂石英光纤,实现了一种紧凑且坚固的超短腔单频光纤激光器,其最大输出功率为75 mW,线宽为14 kHz。此外,还利用我们研制的镱掺杂光纤提出了一种重复频率为1.23 GHz的紧凑被动锁模光纤激光器(MLFL)。对所提出激光器的激光特性进行了系统研究,证明了这种光纤在抗光暗化和超短腔激光应用方面的优越性能。此外,采用基于石英基光纤的全光纤结构具有高稳定性和可靠性的显著优势。