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Speckle dynamics from in-plane rotating diffuse objects in complex ABCD optical systems

机译:复杂ABCD光学系统中面内旋转散射物体的斑点动力学

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The characteristics of a fully developed speckle pattern that results from in-plane rotation of a diffuse object observed in an arbitrary observation plane, as described by the spatiotemporal cross-correlation function of the optical intensity in complex ABCD optical systems, are derived and discussed. Here we consider off-axis illumination, which is in contrast to previous work in which the illuminating beam was assumed to be parallel to the axis of rotation. The spatiotemporal characteristics of the observed pattern are interpreted in terms of speckle boiling, rotation, and translation. For off-axis illumination it is shown theoretically and experimentally that, for Fourier transform optical systems, in-plane rotation causes the speckles to translate in a direction perpendicular to the direction of surface motion, whereas for an imaging system, the translation is parallel to the direction of surface motion. On this basis, we discuss a novel method, which is independent of both the optical wavelength and the position of the laser spot on the object, for determining either the angular velocity or the corresponding in-plane displacement of the target object. (C) 1998 Optical Society of America. [References: 11]
机译:如复杂ABCD光学系统中的光强度的时空互相关函数所描述的,由任意观察平面中观察到的漫射物体的面内旋转导致的充分发展的斑点图案的特性,可以得到推导和讨论。在这里,我们考虑离轴照明,这与先前的工作相反,在先前的工作中,假设照明光束与旋转轴平行。观察到的模式的时空特征是根据斑点沸腾,旋转和平移来解释的。对于离轴照明,理论和实验表明,对于傅立叶变换光学系统,平面内旋转会导致斑点沿垂直于表面运动方向的方向平移,而对于成像系统,平移平行于表面运动的方向。在此基础上,我们讨论了一种新颖的方法,该方法与目标对象的角速度或相应的面内位移无关,该方法与光波长和激光点在对象上的位置无关。 (C)1998年美国眼镜学会。 [参考:11]

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