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Phase offset determining of the central frequency laser pulse with the duration of a few cycles with respect to envelope

机译:相对于包络线几个周期的持续时间确定中心频率激光脉冲的相位偏移

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摘要

A method for the phase offset determining of the central frequency laser pulse with the duration of a few cycles with respect to envelope is proposed. The method is based on generating the difference frequency radiation by mutually orthogonal linearly polarized laser pulses propagating in the GaSe crystal with regular periodical domain structure. The dependence of the difference frequency radiation wavelength corresponding to the maximum of the spectrum on the phase difference between the mutually orthogonal linearly polarized pump pulses is obtained. The dependences of normalized spectral densities of the difference frequency radiation pulses on the phase differences between the pump pulses are obtained. This paper addresses the case, where the durations of the interacting pulses are equal to 30 fs, the central wavelengths are 1.98 mu m and the difference frequency radiation wavelength is in the range of 8-12 mu m. As shown, this method could be applied for phase locking of two femtosecond fiber optic lasers.
机译:提出了一种关于包络线具有几个周期的持续时间的中心频率激光脉冲的相位偏移确定方法。该方法基于通过在具有规则周期畴结构的GaSe晶体中传播的相互正交的线性偏振激光脉冲产生差频辐射。获得与光谱的最大值相对应的差频辐射波长对相互正交的线性极化泵浦脉冲之间的相位差的依赖性。获得了差频辐射脉冲的归一化光谱密度对泵浦脉冲之间的相位差的依赖性。本文讨论的情况是,相互作用脉冲的持续时间等于30 fs,中心波长为1.98μm,差频辐射波长在8-12μm的范围内。如图所示,该方法可以应用于两个飞秒光纤激光器的锁相。

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