使用正交数据存储的高分辨率体全息

A. Yariv, G. Rakuljic, V. Leyva
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引用次数: 4

摘要

全息体数据存储一直是一个有趣的研究课题。这种兴趣的主要原因是巨大的数据存储容量的承诺。在一个长体积中,使用可见光可以存储1012位或更多(1)。然而,到目前为止,所有实现和演示这种密度的体积全息数据存储系统的尝试都远远低于这个理论极限(2-6)。虽然材料的限制导致了这个缺点,但更重要的是,与用于全息访问存储介质体积的角复用方案相关的问题(7-9)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High Resolution Volume Holography using Orthogonal Data Storage
Holographic volume data storage has long been an intriguing subject of research interest. The main reason for this interest is the promise of enormous data storage capacities. In a long volume, storage of 1012 bits or more is possible using visible light (1). However, to date, all attempts at attaining and demonstrating a volume holographic data storage system of this density have fallen far short of this theoretical limit (2-6). Although materials limitations contributed to this shortcoming, of more fundamental importance, however, were the problems associated with the angular multiplexing schemes used to holographically access the volume of the storage medium (7-9).
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