Hasse Kore, Kränkel Christian
Opt Express. 2020 Apr 13;28(8):12011-12019. doi: 10.1364/OE.381443.
We report on fast direct laser inscription of waveguide laser structures in a crystal. For the first time, a 1 MHz-repetition rate fs-laser was utilized for this purpose. We inscribed and characterized more than 100 tracks with different inscription parameters in Yb:CALGO crystals. Waveguide lasing with slope efficiencies of up to 57% at a maximum output power of 3.4 W and more than 55% of optical efficiency was obtained under pumping with an optically pumped semiconductor laser (OPSL), even in waveguides fabricated at record-high inscription velocities of 100 mm/s. Such laser performance is similar to previously reported waveguide lasers inscribed at 1 kHz repetition rate and paves the way toward an industrial fabrication of such waveguides.
我们报道了在晶体中快速直接激光写入波导激光结构的情况。首次将重复频率为1 MHz的飞秒激光用于此目的。我们在Yb:CALGO晶体中写入并表征了100多条具有不同写入参数的轨道。在光泵浦半导体激光器(OPSL)泵浦下,即使在以创纪录的100 mm/s的高写入速度制造的波导中,也能实现斜率效率高达57%、最大输出功率为3.4 W且光效率超过55%的波导激光发射。这种激光性能与先前报道的重复频率为1 kHz写入的波导激光器相似,为这种波导的工业制造铺平了道路。