Yang Jingnan, Tian Kan, Li Yuhang, Dou Xiaodan, Ma Yanjun, Han Wenjuan, Xu Honghao, Liu Junhai
Opt Express. 2018 Aug 20;26(17):21379-21389. doi: 10.1364/OE.26.021379.
An experimental investigation was carried out to evaluate the potential of few-layer BiTe topological insulator in use as a saturable absorber for passive Q-switching of compact solid-state lasers in the 1-μm spectral region. By incorporating a sapphire-based few-layer BiTe sample into a Yb:LuPO laser that was formed with a 4-mm plane-parallel resonator, we realized efficient, high-power, high-repetition-rate pulsed laser operation. Depending on the output coupling utilized, single- or dual-wavelength laser action could be achieved. A maximum output power of 5.02 W at 1014.5 nm was produced at a pulse repetition rate of 1.67 MHz, with an optical-to-optical efficiency of 41% and a slope efficiency of 54%; while operating at 1004.9/1012.7 nm, the pulsed laser could produce an output power of 3.94 W at 1.38 MHz, with a pulse duration being as short as 34 ns. The largest pulse energy and highest peak power achieved were 3.0 μJ and 85.3 W. The results demonstrated in our experiment reveal the great potential of the few-layer BiTe topological insulator in the development of pulsed compact solid-state lasers in the 1-μm region.
开展了一项实验研究,以评估几层铋碲拓扑绝缘体作为可饱和吸收体用于1μm光谱区域紧凑型固态激光器被动调Q的潜力。通过将基于蓝宝石的几层铋碲样品纳入由4mm平-平腔构成的镱:镥磷酸盐激光器中,我们实现了高效、高功率、高重复频率的脉冲激光运转。根据所采用的输出耦合方式,可实现单波长或双波长激光运转。在1.67MHz的脉冲重复频率下,于1014.5nm处产生了5.02W的最大输出功率,光-光效率为41%,斜率效率为54%;而在1004.9/1012.7nm运转时,脉冲激光器在1.38MHz下可产生3.94W的输出功率,脉冲持续时间短至34ns。所实现的最大脉冲能量和最高峰值功率分别为3.0μJ和85.3W。我们实验中展示的结果揭示了几层铋碲拓扑绝缘体在1μm区域脉冲紧凑型固态激光器发展中的巨大潜力。