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Direct measurement of the coupled spatiotemporal coherence of parametric down-conversion under negative group-velocity dispersion

机译:在负组速度分散下直接测量参数下转换的耦合时空相干性

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We present a direct measurement of the spatiotemporal coherence of parametric down-conversion in the range of negative group-velocity dispersion. In this case, the frequency-angular spectra are ring-shaped, and temporal coherence is coupled to spatial coherence. Correspondingly, the lack of coherence due to spatial displacement can be compensated for with the introduction of time delay. We show a simple technique, based on a modified Mach-Zehnder interferometer, which allows us to measure time coherence and near-field space coherence simultaneously, with complete control over both variables. This technique is also suitable for the measurement of second-order coherence, where the main applications are related to two-photon spectroscopy. (C) 2020 Optical Society of America
机译:我们展示了在负组速度分散范围内参数下转换的时空相干性的直接测量。 在这种情况下,频率角谱是环形的,并且时间相干耦合到空间相干性。 相应地,随着时间延迟的引入,可以补偿由于空间位移引起的缺乏连贯性。 我们展示了一种简单的技术,基于改进的Mach-Zehnder干涉仪,它允许我们同时测量时间一致性和近场空间相干性,完全控制两个变量。 该技术也适用于测量二阶相干性,其中主要应用与双光子光谱有关。 (c)2020美国光学学会

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