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Single-shot measurement of the intensity and phase of a femtosecond laser pulse

机译:飞秒激光脉冲强度和相位的单次测量

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Abstract: rt and demonstrate a new technique to measure the full intensity and phase of a single femtosecond laser pulse. The technique, which we call 'frequency resolved optical gating' (FROG), is inexpensive, easy to implement, and provides an output that graphically displays the instantaneous frequency vs. time of the pulse. Using almost any instantaneous nonlinear-optical interaction of two replicas of the ultrashort pulse to be measured, FROG involves measuring the spectrum of the signal pulse as a function of delay between the two replicas. The resulting trace of intensity vs. frequency and delay yields an intuitive display of the pulse, similar to the pulse spectrogram. We show that the problem of inverting the FROG trace to obtain the pulse intensity and phase is a two-dimensional phase- retrieval problem. As a result, the FROG trace yields, in principle, an essentially unique pulse intensity and phase. In this work, we show that this is the case in practice, also. In addition, we present an iterative-Fourier-transform algorithm for inverting the FROG trace.!37
机译:摘要:并演示了一种用于测量单个飞秒激光脉冲的全强度和全相位的新技术。该技术称为“频率分辨光学选通”(FROG),价格便宜,易于实现,并提供以图形方式显示瞬时频率与脉冲时间的输出。利用要测量的超短脉冲的两个复制品的几乎任何瞬时非线性光学相互作用,FROG涉及测量信号脉冲的频谱,作为两个复制品之间的延迟的函数。强度与频率和延迟的关系曲线可以直观显示脉冲,类似于脉冲频谱图。我们表明,反转FROG迹线以获得脉冲强度和相位的问题是二维相位检索问题。结果,FROG走线原则上产生了本质上唯一的脉冲强度和相位。在这项工作中,我们证明在实践中也是如此。此外,我们提出了一种用于反转FROG迹线的迭代傅立叶变换算法!37

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