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Frequency-resolved optical gating measurement of ultrashort pulses passing through a high numerical aperture objective

机译:穿过高数值孔径物镜的超短脉冲的频率分辨光学选通测量

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We investigate using collinear type II second harmonic generation frequency-resolved optical gating (SHG FROG) to measure the pulse intensity and phase at the focus of high numerical aperture (NA) oil objectives. Because of the strong focusing for such objectives, it is not clear theoretically that such a measurement should work. Such objectives can produce severe distortions of the pulse as a function of radius in the objective. In addition, the standard SHG FROG algorithms are based on the assumption that the fundamental and second harmonic fields are plane waves that can be described by the paraxial approximation, and for high NA objectives, such assumptions are suspect. We show that such measurements work remarkably well. The tight focus, while a theoretical difficulty, eliminates many of the problems traditionally associated with SHG FROG including the difficulty of phase matching and walkoff of different polarizations in the crystal. Specifically, we use collinear type II SHG FROG to measure the intensity and phase at the focus of a Zeiss CP-Achromat 100x, 1.25 NA, infinity-corrected oil objective, and accurately retrieve 20 fs pulses.
机译:我们研究使用共线II型二次谐波产生频率分辨光学选通(SHG FROG)来测量高数值孔径(NA)油镜焦点处的脉冲强度和相位。由于对此类目标的高度关注,因此从理论上尚不清楚这种测量是否有效。这样的物镜会根据物镜中的半径产生严重的脉冲畸变。此外,标准SHG FROG算法基于以下假设:基波和二次谐波场是可以通过近轴近似来描述的平面波,对于高NA目标,这种假设值得怀疑。我们表明,这样的测量效果非常好。紧密的焦点虽然是理论上的困难,但却消除了传统上与SHG FROG相关的许多问题,包括相位匹配和晶体中不同极化的偏离的困难。具体而言,我们使用共线II型SHG FROG来测量Zeiss CP-Achromat 100x,1.25 NA,无穷大校正油镜的焦点处的强度和相位,并精确地获取20 fs脉冲。

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