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Recent results of a phase-conjugate holographic system for high-resolution particle image holography

机译:用于高分辨率粒子图像全息术的相位共轭全息系统的最近结果

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A novel holographic particle image velocimeter system has been developed for the study of three-dimensional fluid velocity fields. The recording system produces three-dimensional particle images of micron-sized particles with a resolution, signal-to-noise ratio, accuracy and derived velocity fields that are comparable to high-quality two-dimensional photographic PIV (particle image velocimetry). The high image resolution is accomplished by using low f- number optics, a fringe stabilized processing chemistry, and a phase conjugate play-back geometry that compensates for aberrations in the imaging system. In addition, the system employs a reference multiplexed, off-axis geometry for determining velocity directions using the cross-correlation technique, and a stereo camera geometry for determining the three velocity components. The combination of the imaging and reconstruction sub-systems make the analysis of volumetric PIV domains feasible. Recent results using the newly developed HPIV system are presented and potential uses of the system in other holographic imaging applications are discussed as well.
机译:已经开发了一种新颖的全息粒子图像速度计系统,用于研究三维流体速度场。记录系统产生微米尺寸粒子的三维粒子图像,其分辨率,信噪比比,精度和导出的速度场相当,可与高质量的二维摄影PIV(粒子图像速度计)相当。通过使用低f次光学器件,条纹稳定的加工化学和相位缀合物回放几何形状来完成高图像分辨率,其补偿成像系统中的像差。另外,该系统采用参考多路复用的轴几何,用于使用互相关技术确定速度方向,以及用于确定三个速度分量的立体相机几何形状。成像和重建子系统的组合使得体积PIV结构域的分析是可行的。讨论了使用新开发的HPIV系统的最近结果,并且还讨论了其他全息成像应用中系统的潜在用途。

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