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Carrier envelope phase retrieval of a multi-cycle pulse by heterodyne mixing of a pulse containing a few cycles

机译:通过外差混合包含几个周期的脉冲对多周期脉冲进行载波包络相位恢复

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摘要

We present a theoretical routine for carrier envelope phase (CEP) retrieval of a multi-cycle femtosecond pulse by heterodyne mixing with a CEP-known few-cycle pulse using the time-dependent wavepacket quantum dynamics method. Our study is based on the CEP measuring technique and the dependence of high-order harmonic generation (HHG) spectra on CEP. After heterodyne mixing, half-cycle cutoffs (HCOs) in HHG spectra become distinct when the CEPs of multi-cycle and few-cycle pulses are well matched. The well-matched CEP of the heterodyne mixing field has a significant effect on the HHG spectra. Moreover, both quantum analysis and classical calculations are performed to demonstrate our theoretical results. The extension of CEP measurement from few-cycle pulses to multi-cycle pulses strengthens the controllability of laser parameters for femtosecond pulses.
机译:我们提出了一种理论例程,用于利用与时间有关的波包量子动力学方法,通过外差与CEP已知的几个周期脉冲进行外差混合,从而获得多周期飞秒脉冲的载波包络相位(CEP)。我们的研究基于CEP测量技术以及高阶谐波生成(HHG)光谱对CEP的依赖性。外差混合后,当多周期和少周期脉冲的CEP很好匹配时,HHG光谱中的半周期截止(HCO)变得明显。外差混合场的良好匹配的CEP对HHG光谱有重大影响。此外,量子分析和经典计算都可以证明我们的理论结果。 CEP测量从短周期脉冲扩展到多周期脉冲,增强了飞秒脉冲激光参数的可控性。

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