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Second-harmonic generation frequency-resolved optical gating in the single-cycle regime

机译:单周期二次谐波产生频率分辨光闸

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The problem of measuring broad-band femtosecond pulses by the technique of second-harmonic generation frequency-resolved optical gating (SHG FROG) is addressed. We derive the full equation for the FROG signal, which is valid even for single-optical-cycle pulses. The effect of the phase mismatch in the second-harmonic crystal, the implications of the beam geometry, and the frequency-dependent variation of the nonlinearity are discussed in detail. Our numerical simulations show that, under carefully chosen experimental conditions and with a proper spectral correction of the data, the traditional FROG inversion routines work well even in the single-cycle regime. The developed description of the SHG FROG signal was applied to measure the white-light continuum pulses in the spectral region of 500-1100 nm. The obtained spectral phase of these pulses served as a target function for the pulse compressor design. The pulses produced by compression around 800 nm were also characterized by SHG FROG. The resulting pulse duration measures 4.5 fs which corresponds to /spl sim/2.5 optical cycles.
机译:解决了通过二次谐波产生频率分辨光学选通(SHG FROG)技术测量宽带飞秒脉冲的问题。我们导出了FROG信号的完整方程式,即使对于单光周期脉冲,该方程式也有效。详细讨论了二次谐波晶体中相位失配的影响,光束几何形状的影响以及非线性的频率相关变化。我们的数值模拟表明,在精心选择的实验条件下以及对数据进行适当的光谱校正后,传统的FROG反演程序即使在单周期条件下也能很好地工作。 SHG FROG信号的详细描述用于测量500-1100 nm光谱范围内的白光连续光脉冲。这些脉冲的频谱相位用作脉冲压缩器设计的目标函数。 SHG FROG也表征了在800 nm附近压缩产生的脉冲。产生的脉冲持续时间为4.5 fs,对应于/ spl sim / 2.5个光学周期。

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