Real-Time Optical Intensity Correlator using Photorefractive BSO and a Liquid Crystal Television

C. Soutar, Z. Wang, C. Cartwright, W. Gillespie
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引用次数: 12

Abstract

The use of photorefractive Bi12SiO20 (BSO) as a dynamic holographic medium in optical processing systems has been the subject of much activity. Typical operations carried out include edge enhancement [1], novelty filtering [2] and the correlation of optical signals [3]. However the use of BSO in coherent correlator systems is hindered by positional problems [3,4] as the crystal must be inserted at the Fourier plane of the transforming lens(es) to a high degree of accuracy (to within 0.5 % of the focal length of the lens as determined in ref 3).
利用光折变BSO和液晶电视的实时光强相关器
光折变Bi12SiO20 (BSO)作为动态全息介质在光学处理系统中的应用一直是人们关注的热点。典型的操作包括边缘增强[1]、新颖性滤波[2]和光信号的相关[3]。然而,在相干相关器系统中使用BSO受到位置问题的阻碍[3,4],因为晶体必须以高精度(在参考文献3中确定的透镜焦距的0.5%以内)插入变换透镜的傅立叶平面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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