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Characterization and control of pulse shapes in a doubly resonant synchronously pumped optical parametric oscillator

机译:双共振同步泵浦光参量振荡器中脉冲形状的表征和控制

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摘要

The intracavity signal and idler pulses of a low-loss synchronously pumped doubly resonant optical parametric oscillator were characterized experimentally and simulated numerically versus cavity-length detuning. At operation several hundreds of times above threshold, the detunings that maximize the intracavity average power do not necessarily maximize the temporal overlap of the signal and idler pulses, as is desirable for devices making use of intracavity mixing. Independent control of the signal and idler cavity lengths allowed control of the widths and temporal positioning of the pulses. Numerical studies were performed exploring the intracavity power and temporal overlap of the signal and idler pulses under various group-velocity-mismatch conditions. There was good agreement between the experimental and numerical simulation results.
机译:实验表征了低损耗同步泵浦双谐振光学参量振荡器的腔内信号和空转脉冲,并与腔长失谐进行了数值模拟。在高于阈值数百倍的操作下,最大化腔内平均功率的失谐并不一定会使信号和空转脉冲的时间重叠最大化,这对于利用腔内混合的设备而言是理想的。信号和惰轮腔长度的独立控制允许控制脉冲的宽度和时间位置。进行了数值研究,探索了在各种群速失配条件下腔内功率以及信号和惰轮脉冲的时间重叠。实验结果与数值模拟结果吻合良好。

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