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Generation of carrier fringes in holography and shearography

机译:全息照相和剪切照相术中产生载流子条纹

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Double-exposure holography and double-exposure shearography are often used together with the carrier fringe technique, which requires additional shifting of the light source in a prescribed manner between exposures. In the holographic carrier fringe technique, difficulty in prescribing a suitable movement of the light source may be alleviated through visualization of the moire fringes that are reconstructed by slight displacement of two overlaid families of ellipsoids in a holodiagram. Because shearography is the first differential of holography, it is often impractical to perform two successive optical differentiations on the ellipsoids to visualize the shearographic carrier fringes. A simple method of discerning holographic and shearographic carrier fringes is described. The method is based on the hyperboloids in a holodiagram that represent Young's (interference) fringes produced by the interference of two point sources. The hyperboloids are analogous to holographic carrier fringes, whereas the moire patterns reconstructed from two overlaid hyperboloids are analogous to shearographic carrier fringes. Use of this method for explaining the formation of deformation fringes in plate bending, as well as the effect of light-source movement on the deformation fringes, is also illustrated.
机译:两次曝光全息术和两次曝光剪切成像通常与载体条纹技术一起使用,该技术需要在两次曝光之间以规定的方式额外移动光源。在全息载体条纹技术中,可以通过可视化全息图上的两个重叠族椭圆体的微小位移而重建的莫尔条纹来减轻规定光源适当运动的困难。因为剪切成像是全息术的第一个微分,所以在椭圆体上进行两个连续的光学微分以可视化剪切成像载体条纹通常是不切实际的。描述了一种识别全息和切变载体条纹的简单方法。该方法基于全向图中的双曲面,该双曲面表示由两个点源的干涉产生的杨氏(干涉)条纹。双曲面与全息载体条纹相似,而从两个重叠的双曲面重建的莫尔条纹与剪切载体条纹相似。还说明了使用该方法来解释板弯曲中变形条纹的形成,以及光源移动对变形条纹的影响。

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