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Study of dispersion compensation effect of femtosecond laser amplifier using home-made third-order autocorrelator

机译:用自制的三阶自相关器研究飞秒激光放大器的色散补偿效果

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摘要

Detailed experimental and theoretical analyses of the dispersion compensation effect in a femtosecond laser amplifier are presented. It is confirmed that the temporal structures in the vicinity of the central peak of the amplified laser pulse are primarily caused by the uncompensated third- and/or fourth-order dispersion. The specific detrimental roles played by the third- and fourth-order dispersions such as resulting in the formation of asymmetrical pulse shapes and satellite pulses are revealed and experimentally verified with third-order autocorrelation measurements. With the help of a third-order autocorrelator, it is more efficient and accurate to optimize the third- and fourth-order dispersion compensation when the roundtrip times of a laser pulse inside the regenerative amplifier changes. For practical applications, in order to achieve laser pulses with highest quality, namely with minimum pulse energy in their wings, it is imperative to optimize the dispersion-control parameters while monitoring the laser pulses with a third-order autocorrelator.
机译:给出了飞秒激光放大器中色散补偿效果的详细实验和理论分析。可以确认,放大的激光脉冲的中心峰附近的时间结构主要是由未补偿的三阶和/或四阶色散引起的。通过三阶自相关测量,揭示并通过实验验证了三阶和四阶色散所起的特定有害作用,例如导致形成不对称脉冲形状和卫星脉冲。借助于三阶自相关器,当再生放大器内部的激光脉冲的往返时间改变时,优化三阶和四阶色散补偿将更加高效,准确。在实际应用中,为了获得最高质量的激光脉冲,即在其机翼中具有最小的脉冲能量,必须在使用三阶自相关器监视激光脉冲的同时优化色散控制参数。

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