采用扩频光束的多光配置

N. Yamaguchi, Minoru Watanabe
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引用次数: 1

摘要

光学可重构门阵列(ORGAs)是一种可编程门阵列,它由门阵列VLSI、全息存储器和激光二极管阵列组成,可以实现快速重构和多种重构环境。通过使用激光二极管阵列寻址的全息存储器的衍射图案,对ORGA的门阵列进行光学重新配置。对于激光二极管阵列,传统的ORGA总是需要准直光束,这就需要使用一些透镜和它的精确对准。因此,本文提出了一种非常紧凑和简单的多上下文ORGA结构,该结构使用无透镜的垂直腔面发射激光器(VCSELs)的扩散光束。本文描述了两个配置上下文的实现及其重新配置的实验结果,以及未来工作的计划。
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Multi-optical configuration using spreading beams
Optically reconfigurable gate arrays (ORGAs), which consist of a gate array VLSI, a holographic memory, and a laser diode array, are a type of programmable gate array that can achieve rapid reconfiguration and numerous reconfiguration contexts. The gate array of an ORGA is optically reconfigured using diffraction patterns from a holographic memory that is addressed using a laser diode array. For the laser diode array, a conventional ORGA always required collimated beams, necessitating the use of some lenses and its accurate alignment. Therefore, this paper presents the very compact and simple architecture of a multi-context ORGA that uses spreading beams of Vertical Cavity Surface Emitting Lasers (VCSELs) with no lenses. This paper describes experimental results of implementation of two configuration contexts and their reconfigurations, in addition to plans for future work.
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