Yu Xiaoxu, Eremeev Kirill, Pan Zhongben, Loiko Pavel, Chu Hongwei, Pan Han, Braud Alain, Camy Patrice, Li Dechun
Opt Express. 2024 May 6;32(10):18055-18067. doi: 10.1364/OE.524153.
The polarized spectral properties and ∼2.3 µm high-power continuous-wave laser operation of Tm-doped yttrium orthovanadate crystal (Tm:YVO) are reported. For the H → H transition, the stimulated-emission cross-section σ is 1.01 × 10 cm at 2276 nm corresponding to a large emission bandwidth of 52 nm (for π-polarization). Pumped by a 794 nm laser diode, the 1.5 at.% Tm:YVO laser delivered 5.52 W at 2.29 µm with a slope efficiency of 19.9%, a laser threshold of 8.70 W, and a linear laser polarization (π). The Tm laser operated on the cascade scheme (on the H → H and F → H transitions) which was mainly responsible for the observed high laser slope efficiency. We also report on the first passively Q-switched Tm:YVO laser at 2.3 µm by employing porous nano-grained cuprous selenide (PNG-CuSe) as a saturable absorber. The shortest pulse duration and the highest single pulse energy amounted to 706 ns and 3.65 µJ, respectively, corresponding to a pulse repetition rate of 62.8 kHz.
报道了掺铥正钒酸钇晶体(Tm:YVO)的偏振光谱特性及约2.3μm的高功率连续波激光运转。对于H→H跃迁,在2276nm处受激发射截面σ为1.01×10⁻¹⁹cm²,对应于52nm的大发射带宽(对于π偏振)。由794nm激光二极管泵浦,1.5at.%的Tm:YVO激光器在2.29μm处输出功率为5.52W,斜率效率为19.9%,激光阈值为8.70W,且具有线性激光偏振(π)。该Tm激光器基于级联方案运转(在H→H和F→H跃迁上),这是观察到的高激光斜率效率的主要原因。我们还报道了首次采用多孔纳米颗粒硒化亚铜(PNG-CuSe)作为可饱和吸收体的2.3μm被动调Q Tm:YVO激光器。最短脉冲持续时间和最高单脉冲能量分别为706ns和3.65μJ,对应脉冲重复频率为62.8kHz。