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Theoretical models for the extracavity Raman laser with crystalline Raman medium

机译:晶体拉曼介质的腔外拉曼激光的理论模型

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摘要

The rate equation model of an extracavity Raman laser is deduced for the first time to the best knowledge of the authors. The normalized radiation transfer equations of the extracavity Raman laser are given. The normalized radiation transfer equations and rate equations were solved numerically to find the optimum reflectivity of the output coupler to realize the maximum conversion efficiency at the first Stokes for both the single and double-pass pumping configurations. Also, the pulse duration of the first Stokes was investigated numerically. The rate equations are verified to be a good approximation to the radiation transfer equations for the regime of low Raman gain and long pump pulse duration. Furthermore, it is found that the optimum reflectivity of the first Stokes and the second Stokes threshold are influenced significantly by the minor feedback of the resonator mirror at the second Stokes.
机译:据作者所知,首次得出了腔外拉曼激光器的速率方程模型。给出了腔外拉曼激光器的归一化辐射传输方程。对归一化的辐射传输方程式和速率方程式进行了数值求解,以找到输出耦合器的最佳反射率,从而在单程和双程泵浦配置中实现第一斯托克斯泵的最大转换效率。同样,对第一个斯托克斯的脉冲持续时间进行了数值研究。对于低拉曼增益和长泵浦脉冲持续时间的情况,速率方程被证明是与辐射传递方程的良好近似。此外,发现第一斯托克斯的最佳反射率和第二斯托克斯阈值受到第二斯托克斯处的谐振器镜的次要反馈的显着影响。

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