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Gain enhancement of multistage parametric intracavity frequency conversion

机译:多级参数腔内频率转换的增益增强

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Multistage intracavity frequency conversion in optical parametric oscillators (OPOs) can generate new frequencies efficiently over a large dynamic range of pump intensity. These frequencies can be either higher or lower than the pump frequency. High efficiency is correlated with steady states exhibiting nearly complete pump depletion (CPD). Placing a second OPO crystal with high small-signal gain in the cavity does not affect the steady states with CPD, if the pump is depleted and the idler out-coupled before these fields reach the high-gain crystal. However, the high-gain crystal promotes rapid saturation, and hence higher time-averaged efficiency, in Q-switched devices. Numerical modeling of injection-seeded Q-switched devices in three spatial dimensions suggests that excellent beam quality at high peak power is obtainable. However, instabilities can occur in this modeling, and it is not known if these numerical instabilities entail instabilities in the physical devices.
机译:光学参量振荡器(OPO)中的多级腔内频率转换可以在较大的泵浦动态范围内有效地产生新的频率。这些频率可以高于或低于泵浦频率。高效率与稳定状态相关,表现出几乎完全的泵耗(CPD)。如果在这些磁场到达高增益晶体之前,泵已耗尽并且惰轮已去耦,则在腔中放置第二个具有高小信号增益的OPO晶体不会影响CPD的稳态。然而,在Q开关器件中,高增益晶体可促进快速饱和,从而提高平均时间效率。在三个空间维度上对注入式Q开关器件的数值建模表明,在高峰值功率下可获得出色的光束质量。但是,在此建模中可能会发生不稳定性,并且不知道这些数值不稳定性是否会导致物理设备中出现不稳定性。

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