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Real-time inversion of polarization gate frequency-resolved optical gating spectrograms

机译:偏振门频率分辨光学门控频谱图的实时反演

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Frequency-resolved optical gating (FROG) is a technique used to measure the intensity and phase of ultrashort laser pulses through the optical construction of a spectrogram of the pulse. To obtain quantitative information about the pulse from its spectrogram, an iterative two-dimensional phase-retrieval algorithm must be used. Current algorithms are quite robust, but retrieval of all the pulse information can be slow. Previous real-time FROG trace inversion work focused on second-harmonic-generation FROG, which has an ambiguity in the direction of time, and required digital signal processors (DSPs). We develop a simplified real-time FROG device based on a single-shot geometry that no longer requires DSPs. We use it and apply the principal component generalized projections algorithm to invert polarization gate FROG traces at rates as high as 20 Hz.
机译:频率分辨光学选通(FROG)是一种用于通过脉冲光谱图的光学构造来测量超短激光脉冲的强度和相位的技术。为了从其频谱图中获得有关脉冲的定量信息,必须使用迭代的二维相位检索算法。当前的算法相当健壮,但是所有脉冲信息的检索可能很慢。以前的实时FROG跟踪反演工作集中于第二谐波FROG,它在时间方向上含糊不清,并且需要数字信号处理器(DSP)。我们基于不再需要DSP的单发几何结构开发了简化的实时FROG设备。我们使用它并应用主成分广义投影算法以高达20 Hz的速率反转极化门FROG迹线。

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    《Applied optics》 |2003年第6期|共5页
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