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Efficiency improvement of an optical parametric oscillator using top-hat transverse profile for the pump beam

机译:使用顶帽横向型泵梁的光学参数振荡器的效率改进

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Pulsed nanosecond optical parametric oscillators, in general, are pumped by a direct laser beam having Gaussian intensity profiles in temporal and spatial domains, which limits the conversion efficiency due to energy consumption during build-up of signal and idler intensities, and back-conversion effects. Efficiency optimization in an OPO involves reducing the loss due to these effects; however, spatial distribution of amplitude across the beam limits the optimized efficiency. We show that by using a spatially uniform intensity profile for the input pump beam, one can achieve much higher optimized efficiency because of optimum conversion across the whole cross-section of the beam. Our simulation results predict a significant improvement of ∼41% in the optimized efficiency using a pump beam with top-hat transverse intensity profile.
机译:通常,脉冲纳秒光学参数振荡器通过在时间和空间域中具有高斯强度分布的直接激光束泵浦,这限制了信号和惰轮强度的积聚期间能耗导致的转换效率,以及背部转换效果 。 OPO中的效率优化涉及降低由于这些效果导致的损失; 然而,横跨光束的幅度的空间分布限制了优化的效率。 我们表明,通过使用用于输入泵浦光束的空间均匀的强度曲线,可以在光束的整个横截面上最佳转换来实现更高的优化效率。 我们的仿真结果预测了&#223c的显着改善;使用具有顶帽横向强度曲线的泵浦梁的优化效率为41%。

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