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Adaptive interferometry based on dynamic reflective holograms in cubic photorefractive crystals

机译:基于动态反射全息图的立方光折射晶体中的自适应干涉测量

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摘要

The characteristics of a holographic interferometer, which is based on the interaction of counterpropagating light waves on reflective holograms in cubic photorefractive sillenite crystals of the (100) cut and designed for measuring surface vibration spectra from specularly reflecting objects, have been theoretically analysed and experimentally studied. The experiments showed that an interferometer of this type, based on an Bi_(12)TiO_(20): Fe,Cu crystal, makes it possible to measure vibrations with an amplitude of 5 pm. An analysis performed with allowance for the shot and thermal noise of the photodetector showed that vibrations with an amplitude below 1 pm can be measured. A model is proposed to describe the experimentally found strong temperature dependence of the light interaction on reflection holograms in a Bi_(12)TiO_(20): Ca crystal. This model takes into account the influence of temperature on the photoinduced charge redistribution over deep donor and shallow trap centres, as well as the drift of the interference pattern in the crystal due to the thermooptical effect and linear expansion of the crystal.
机译:对全息干涉仪的特性进行了理论分析和实验研究,该全息干涉仪的特性基于(100)切割的立方光折变次硅酸盐晶体的反射全息图上反向传播的光波与反射全息图的相互作用,并设计用于测量镜面反射物体的表面振动谱。 。实验表明,这种基于Bi_(12)TiO_(20):Fe,Cu晶体的干涉仪可以测量振幅为5 pm的振动。对光电探测器的散粒和热噪声进行了分析,结果表明可以测量振幅低于1 pm的振动。提出了一个模型来描述实验发现的Bi_(12)TiO_(20):Ca晶体中光相互作用对反射全息图的强烈温度依赖性。该模型考虑了温度对深施主和浅陷阱中心上的光诱导电荷再分布的影响,以及由于晶体的热光学效应和晶体的线性膨胀而导致的晶体中干涉图样的漂移。

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