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Raman oscillation with intracavity second harmonic generation

机译:腔内二次谐波产生的拉曼振荡

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We use a plane-wave analysis to examine a Raman oscillator containing an intracavity second harmonic interaction that frequency doubles the circulating first-order Stokes radiation. We find that there is an optimum ratio between the nonlinear coupling in the Raman medium and the nonlinear coupling in the frequency doubler. We also find that higher order Stokes radiation should be suppressed with the optimum choice of nonlinear coupling in the frequency doubler. We present numerical integration results that model the stimulated Raman scattering and second harmonic generation in three spatial dimensions. Quantum efficiencies as large as 48% are predicted from planewave theory and 43% are obtained from numerical integration of the equations containing transverse effects.
机译:我们使用平面波分析来检查包含腔内二次谐波相互作用的拉曼振荡器,该谐振腔的频率是循环的一阶斯托克斯辐射的两倍。我们发现在拉曼介质中的非线性耦合与倍频器中的非线性耦合之间存在最佳比率。我们还发现,应通过倍频器中非线性耦合的最佳选择来抑制高阶斯托克斯辐射。我们提出了数值积分结果,该结果在三个空间维度上模拟了受激拉曼散射和二次谐波的产生。根据平面波理论可以预测高达48%的量子效率,而通过包含横向效应的方程的数值积分可以获得43%的量子效率。

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