Wei Zhenshuai, Huang Lu, Li Haiyan, Zhao Xian, Zhao Zhigang, Cong Zhenhua, Liu Zhaojun
Opt Express. 2024 Apr 22;32(9):15370-15379. doi: 10.1364/OE.522250.
A single-frequency distributed Bragg Reflector (DBR) fiber laser operating at 1091 nm was demonstrated by using a Yb:YAG crystal-derived silica fiber (YDSF). The YDSF was prepared via the molten core (MC) method, with a YbO doping concentration of 5.60 wt.% in the core, resulting in a gain coefficient of 1.45 dB/cm at 1091 nm. Employing 0.8 cm of the YDSF, we attained a single-frequency laser with a maximum output power of 145 mW and a slope efficiency of 31.8%. The laser exhibited an optical signal-to-noise ratio (OSNR) exceeding 71 dB, a linewidth of ∼34 kHz, and a stabilized relative intensity noise (RIN) at -132 dB/Hz for frequencies over 4.5 MHz. The fiber laser could serve as an outstanding seed source for high-power, narrow-linewidth fiber amplifiers operating at 1091 nm.
通过使用源自Yb:YAG晶体的二氧化硅光纤(YDSF),展示了一种工作在1091nm的单频分布布拉格反射器(DBR)光纤激光器。YDSF通过熔芯(MC)法制备,纤芯中的YbO掺杂浓度为5.60 wt.%,在1091nm处的增益系数为1.45 dB/cm。使用0.8cm的YDSF,我们获得了一个单频激光器,其最大输出功率为145mW,斜率效率为31.8%。该激光器的光信噪比(OSNR)超过71dB,线宽约为34kHz,在频率超过4.5MHz时,相对强度噪声(RIN)稳定在-132dB/Hz。该光纤激光器可作为工作在1091nm的高功率、窄线宽光纤放大器的出色种子源。