Volume holographic recording of narrow-band information

J. Shamir
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引用次数: 2

Abstract

Volume holography is gaining renewed interest sparked by the need for denser and faster information storage paradigms as well as for wavelength manipulation in communication networks and laser beam shaping. Conventional approaches used for theoretical analysis of the volume holographic processes are not adequate when complicated wavefronts are involved since they can only deal with elementary cases, such as plane waves. The present work exploits the fact that most holographic systems involve several waves that may propagate at large angles but each of them contains only a relatively narrow spatial frequency band. Introducing a narrow band approximation facilitates the theoretical treatment of architectures comprising several wave fronts propagating at large angles. The combination of this approximation with a generalized description of volume holography leads to a theoretical framework that is suitable for the analysis of most holographic systems encountered in the applications indicated above. A numerical study demonstrates the power of the method and the existence of a coherent motion blur that was predicted recently. The study indicates the effectiveness of volume holography for beam shaping and leads to some disturbing consequences related to bit-oriented information storage.
窄带信息的全息体记录
由于需要更密集和更快的信息存储范式,以及通信网络和激光束整形中的波长操作,体全息术重新引起了人们的兴趣。当涉及到复杂的波前时,传统的体全息过程理论分析方法是不够的,因为它们只能处理基本的情况,如平面波。目前的工作利用了这样一个事实,即大多数全息系统包含几个波,这些波可以以大角度传播,但每个波只包含一个相对狭窄的空间频带。引入窄带近似有助于理论处理由以大角度传播的几个波前组成的体系结构。这种近似与体全息的广义描述相结合,导致了一个理论框架,适用于在上述应用中遇到的大多数全息系统的分析。数值研究证明了该方法的有效性和最近预测的相干运动模糊的存在。研究表明,体全息技术在光束整形方面是有效的,但也导致了一些与位信息存储相关的令人不安的后果。
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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