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用于相位恢复的散斑强度测量的量化分析。

Quantization analysis of speckle intensity measurements for phase retrieval.

作者信息

Maallo Anne Margarette S, Almoro Percival F, Hanson Steen G

机构信息

National Institute of Physics, University of the Philippines, Diliman, Quezon City 1101, Philippines.

出版信息

Appl Opt. 2010 Sep 20;49(27):5087-94. doi: 10.1364/AO.49.005087.

Abstract

Speckle intensity measurements utilized for phase retrieval (PR) are sequentially taken with a digital camera, which introduces quantization error that diminishes the signal quality. Influences of quantization on the speckle intensity distribution and PR are investigated numerically and experimentally in the static wavefront sensing setup. Results show that 3 to 4 bits are adequate to represent the speckle intensities and yield acceptable reconstructions at relatively fast convergence rates. Computer memory requirements may be eased down by 2.4 times if a 4 bit instead of an 8 bit camera is used. This may facilitate rapid speckle data acquisition for dynamic wavefront sensing.

摘要

用于相位恢复(PR)的散斑强度测量是通过数码相机依次进行的,这会引入量化误差,从而降低信号质量。在静态波前传感装置中,通过数值模拟和实验研究了量化对散斑强度分布和相位恢复的影响。结果表明,3至4位足以表示散斑强度,并能以相对较快的收敛速度产生可接受的重建结果。如果使用4位相机而非8位相机,计算机内存需求可降低2.4倍。这可能有助于动态波前传感的快速散斑数据采集。

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