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Starch-based second-harmonic-generated collinear frequency-resolved optical gating pulse characterization at the focal plane of a high-numerical-aperture lens

机译:基于淀粉的二次谐波产生的共线频率分辨光选通脉冲在高数值孔径透镜焦平面处的表征

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摘要

We report the use of starch as an ideal nonlinear medium with which to perform collinear frequency-resolved optical gating measurements of ultrashort pulses at the focal plane of a high-numerical-aperture (NA) lens. We achieved these measurements by simply sandwiching starch granules (suspended in water) between two coverslips and placing them within the focal plane of a high-NA lens. The natural nonlinear characteristics of starch allow the correct phase matching of pulses at the focal plane of a high-NA lens at different wavelengths. This elegant arrangement overcomes all the complexity and problems that were previously associated with pulse characterization within a multiphoton microscope.
机译:我们报道了淀粉作为一种理想的非线性介质的使用,可用于在高数值孔径(NA)透镜的焦平面上对超短脉冲进行共线频率分辨光学选通测量。我们通过简单地将淀粉颗粒(悬浮在水中)夹在两个盖玻片之间并将它们置于高NA透镜的焦平面内来实现这些测量。淀粉的自然非线性特性可以使高NA透镜的焦平面上不同波长的脉冲进行正确的相位匹配。这种优雅的布置克服了以前与多光子显微镜内的脉冲表征相关的所有复杂性和问题。

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