首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Numerical computation of in-plane displacements and their detection in the near field by double-exposure objective speckle photography
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Numerical computation of in-plane displacements and their detection in the near field by double-exposure objective speckle photography

机译:两次曝光物镜散斑摄影的面内位移数值计算及其在近场中的检测

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摘要

A model of a rough surface to the scale of the optical wavelength is proposed, with randomly distributed zero-mean Gaussian heights. It is assumed that the aforesaid surface is illuminated by a coherent light beam of homogeneous intensity. An in-plane pure translation of this surface is simulated on a PC by means of the Matlab program. In the near-field optical regions the Fraunhofer approximation and the subsequent FFT are not suitable for application in the generation of a speckle pattern. Hence, with the aim of calculating the translation of the rough surface by means of double-exposure objective speckle photography using the point-wise filtering technique (PWFT), the Fresnel-Kirchhoff integral is first employed to obtain the speckle intensity near the surface on a photographic plate, and then the intensity pattern produced by the diffraction of the plate is determined in the far field (Fraunhofer), which suffices to calculate the modulus of displacement through the Young's fringes. The results are analyzed according to surface roughness and the sample distance to the recording plane.
机译:提出了具有光波长范围的粗糙表面模型,该模型具有随机分布的零均值高斯高度。假定上述表面被强度均匀的相干光束照亮。通过Matlab程序在PC上模拟该表面的平面内纯平移。在近场光学区域中,弗劳恩霍夫(Fraunhofer)逼近和随后的FFT不适合用于散斑图样的生成。因此,为了利用点逐点滤波技术(PWFT)通过两次曝光的客观散斑摄影来计算粗糙表面的平移,首先采用菲涅耳-基尔霍夫积分来获得表面上散斑的强度。照相板,然后在远场(Fraunhofer)中确定由板的衍射产生的强度模式,这足以计算通过杨氏条纹的位移模量。根据表面粗糙度和样品到记录平面的距离分析结果。

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