首页> 外文会议>Conference on Nonlinear Optics and Applications IX >Parametric Raman anti-Stokes laser at 503 nm with phase-matched collinear beam interaction of orthogonally polarized Raman components in calcite under 532 nm 20 ps laser pumping
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Parametric Raman anti-Stokes laser at 503 nm with phase-matched collinear beam interaction of orthogonally polarized Raman components in calcite under 532 nm 20 ps laser pumping

机译:在532 nm 20 ps激光泵浦下,方解石中正交偏振拉曼分量的相匹配共线光束相互作用的503 nm参数拉曼反斯托克斯激光器

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Lasers based on stimulated-Raman-scattering process can be used for the frequency-conversion to the wavelengths that are not readily available from solid-state lasers. Parametric Raman lasers allow generation of not only Stokes, but also anti-Stokes components. However, practically all the known crystalline parametric Raman anti-Stokes lasers have very low conversion efficiencies of about 1 % at theoretically predicted values of up to 40 % because of relatively narrow angular tolerance of phase matching in comparison with angular divergence of the interacting beams. In our investigation, to widen the angular tolerance of four-wave mixing and to obtain high conversion efficiency into the anti-Stokes wave we propose and study a new scheme of the parametric Raman anti-Stokes laser at 503 nm with phase-matched collinear beam interaction of orthogonally polarized Raman components in calcite under 532 nm 20 ps laser pumping. We use only one 532-nm laser source to pump the Raman-active calcite crystal oriented at the phase matched angle for orthogonally polarized Raman components four-wave mixing. Additionally, we split the 532-nm laser radiation into the orthogonally polarized components entering to the Raman-active calcite crystal at the certain incidence angles to fulfill the tangential phase matching compensating walk-off of extraordinary waves for collinear beam interaction in the crystal with the widest angular tolerance of four-wave mixing. For the first time the highest 503-nm anti-Stokes conversion efficiency of 30 % close to the theoretical limit of about 40 % at overall optical efficiency of the parametric Raman anti-Stokes generation of up to 3.5 % in calcite is obtained due to realization of tangential phase matching insensitive to the angular mismatch.
机译:基于受激拉曼散射过程的激光器可用于将频率转换为固态激光器不易获得的波长。参数拉曼激光器不仅可以生成斯托克斯,而且还可以生成反斯托克斯分量。但是,实际上,所有已知的晶体参数拉曼反斯托克斯激光器都具有非常低的转换效率,理论上的预测值高达40%,这是因为相匹配的角度公差与相互作用光束的角度发散相比相对较窄,因此转换效率高达40%。在我们的研究中,为了拓宽四波混频的角度公差并获得高的反斯托克斯波转换效率,我们提出并研究了相位匹配共线光束在503 nm下的参量拉曼反斯托克斯激光的新方案。 532 nm 20 ps激光泵浦下方解石中正交偏振拉曼成分的相互作用。我们仅使用一个532 nm激光源泵浦以相位匹配角定向的拉曼活性方解石晶体,以进行正交极化的拉曼分量四波混合。此外,我们将532 nm的激光辐射分成在特定入射角进入拉曼活性方解石晶体的正交偏振分量,以实现切向相匹配,补偿超常波的走失,从而使晶体中的共线光束相互作用得以消除。四波混频的最大角度公差。由于实现了参数拉曼反斯托克斯的总体光学效率,方解石产生的最高503 nm反斯托克斯转换效率首次达到30%,接近理论极限的约40%,在方解石中产生高达3.5%的参量拉曼反斯托克斯。对角不匹配不敏感的切向相位匹配。

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