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首页> 外文期刊>IEEE Journal of Quantum Electronics >Characterization and modeling of a noncollinearly phase-matched femtosecond optical parametric oscillator based on KTA and operating to beyond 4 /spl mu/m
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Characterization and modeling of a noncollinearly phase-matched femtosecond optical parametric oscillator based on KTA and operating to beyond 4 /spl mu/m

机译:基于KTA的非共线相位匹配飞秒光参量振荡器的表征和建模,工作速率超过4 / spl mu / m

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摘要

We describe the design and operation of a critically phase-matched femtosecond optical parametric oscillator based on KTA. By employing a small pump-signal noncollinear angle, tuning of the idler to beyond 4 /spl mu/m is achieved using a Ti:sapphire pump laser. A Gaussian-beam model is described which can be used to identify the optimal noncollinear phase-matching geometry. Idler and signal pulses are characterized fully both temporally and spectrally and interferometric autocorrelation data at 3.5 /spl mu/m showing idler pulses of only eight optical cycles duration are presented.
机译:我们描述了基于KTA的临界相位匹配飞秒光学参量振荡器的设计和操作。通过采用较小的泵浦信号非共线角度,可使用Ti:蓝宝石泵浦激光器将惰轮调整至超过4 / spl mu / m。描述了一种高斯光束模型,该模型可用于识别最佳非共线相位匹配几何形状。惰轮和信号脉冲在时间和频谱上都得到了充分表征,干涉自相关数据为3.5 / splμm/ m,显示了只有八个光学周期持续时间的惰轮脉冲。

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