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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Theoretical analysis of self-frequency doubling in a high-power longitudinally diode-pumped Nd:YCOB laser
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Theoretical analysis of self-frequency doubling in a high-power longitudinally diode-pumped Nd:YCOB laser

机译:大功率纵向二极管泵浦Nd:YCOB激光器自倍频的理论分析

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摘要

We report a theoretical analysis of a laser-diode-pumped self-frequency-doubling (SFD) Nd:Ca4YO(BO3)(3) (Nd:YCOB) laser for high output power. A SFD model is presented by combining the laser rate equation and second-harmonic generation coupled-wave equations inside the same laser crystal. In this SFD model, the continuous wave end-pumped space-dependent Gaussian beam profile, variation of the pump beam waist, fundamental wave depletion, and thermally induced diffractive losses are taken into account. In order to investigate the dependence of SFD output power on the Nd3+ doping concentration, we implement the measurement of the absorption spectra for different Nd3+ doping Nd: YCOB samples. The comparison of plane wave approximation and the Gaussian beam model with and without thermally induced diffractive losses are presented. Then, we focus on the optimization of a high-power SFD Nd:YCOB laser, including the optimum pump beam waist, the optimum Nd3+ doping concentration, and the optimum Nd:YCOB crystal length. (C) 2016 Optical Society of America
机译:我们报告对高输出功率的激光二极管泵浦自倍频(SFD)Nd:Ca4YO(BO3)(3)(Nd:YCOB)激光器的理论分析。通过结合同一激光晶体内部的激光速率方程和二次谐波产生耦合波方程,提出了一种SFD模型。在该SFD模型中,考虑了连续波端泵浦的空间相关高斯光束轮廓,泵浦束腰的变化,基波损耗和热致衍射损耗。为了研究SFD输出功率对Nd3 +掺杂浓度的依赖性,我们对不同Nd3 +掺杂Nd:YCOB样品进行了吸收光谱的测量。给出了有和没有热致衍射损耗的平面波近似与高斯光束模型的比较。然后,我们集中于优化大功率SFD Nd:YCOB激光器,包括最佳泵浦束腰,最佳Nd3 +掺杂浓度和最佳Nd:YCOB晶体长度。 (C)2016美国眼镜学会

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