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Nonlinear optical measurements using a 4f coherent imaging system with phase objects

机译:使用带有相位对象的4f相干成像系统进行非线性光学测量

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We report a one-laser-shot measurement technique using a phase object at the entry of a 4f coherent imaging system to characterize the value of the nonlinear refractive index of materials placed in the Fourier plane of the setup. Experimental and simulated images are presented here in order to validate our approach. We show that the use of a quarter-wavelength dephasing object maximizes the transmission variations in the detected image. We show also that the use of phase objects increases significantly the sensitivity of the measurement compared to top-hat beams (by a factor of 6). Moreover, by adding this type of object at the entry of our imaging system it is possible to determine the sign of the refractive nonlinearity.
机译:我们报告了一种在4f相干成像系统的入口处使用相位物体进行单次发射的测量技术,以表征放置在设置傅立叶平面中的材料的非线性折射率值。为了验证我们的方法,此处提供了实验图像和模拟图像。我们表明,使用四分之一波长移相对象可以使检测到的图像中的透射率变化最大化。我们还表明,与大礼帽光束相比,使用相位对象显着提高了测量的灵敏度(系数为6)。此外,通过在我们的成像系统的入口处添加此类物体,可以确定折射非线性的符号。

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