Binary Zone Plate Array for Parallel Joint Transform Correlator System:Design and Evaluation

Asako Hashimoto, Kyoko Koda, K. Kodate, R. Thapliya, T. Kamiya
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Abstract

Optical information processing systems based on Fourier transformation, such as the matched filtering correlation or the joint transform correlation, offer advantages such as parallel processing capability, direct input of signal images, freedom from electronic noise, and so on1,2). The key components of these systems are micro-optic components for generating efficient multiple image and spatial light modulators for real-time optical filtering . Binary zone plate array (BZPA), one of the diffractive optical elements, is especially attractive in the fields of optical computing and interconnection, where use of free space optics offer flexibility in designing a system of massive parallelism3,4).
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用于并联联合变换相关器系统的二元带板阵列:设计与评价
基于傅里叶变换的光学信息处理系统,如匹配滤波相关或联合变换相关,具有并行处理能力、信号图像直接输入、不受电子噪声影响等优点(1,2)。这些系统的关键部件是用于产生高效多图像的微光学元件和用于实时光学滤波的空间光调制器。二元带板阵列(BZPA)是衍射光学元件之一,在光学计算和互连领域尤其具有吸引力,在这些领域中,自由空间光学的使用为设计大规模并行系统提供了灵活性(3,4)。
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