Smetanin S N, Jelínek M, Tereshchenko D P, Kubeček V
Opt Express. 2018 Sep 3;26(18):22637-22649. doi: 10.1364/OE.26.022637.
The extracavity parametric Raman CaCO anti-Stokes laser at 954 nm excited by two orthogonally polarized (pump and probe) equal frequency laser beams was proposed and investigated. Tangential phase matching conditions for the orthogonally polarized Raman components four-wave mixing in the CaCO crystal at stimulated Raman scattering (SRS) under 1064-nm excitation were theoretically studied and applied for a novel nanosecond parametric Raman laser allowing to increase the 954-nm anti-Stokes generation efficiency. In agreement with the theoretical modeling, using the high-Q external cavity scheme we have experimentally achieved the highest optical-to-optical (1064 nm to 954 nm) efficiency of 4% in comparison with the known crystalline parametric Raman anti-Stokes lasers. The ~3 ns anti-Stokes output pulse energy was 0.3 mJ with high beam quality factor M = 1.1 × 1.2.
提出并研究了一种由两束正交偏振(泵浦和探测)等频激光束激发的954nm腔外参量拉曼CaCO反斯托克斯激光器。从理论上研究了在1064nm激发下,CaCO晶体中正交偏振拉曼分量在受激拉曼散射(SRS)时四波混频的切向相位匹配条件,并将其应用于一种新型纳秒参量拉曼激光器,以提高954nm反斯托克斯光的产生效率。与理论模型一致,采用高Q值外腔方案,我们通过实验实现了与已知晶体参量拉曼反斯托克斯激光器相比最高4%的光光(1064nm至954nm)转换效率。约3ns的反斯托克斯输出脉冲能量为0.3mJ,光束质量因子M = 1.1×1.2。