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基于厄米对称性实现高面密度的数字超分辨率全息数据存储

Digital super-resolution holographic data storage based on Hermitian symmetry for achieving high areal density.

作者信息

Nobukawa Teruyoshi, Nomura Takanori

出版信息

Opt Express. 2017 Jan 23;25(2):1326-1338. doi: 10.1364/OE.25.001326.

Abstract

Digital super-resolution holographic data storage based on Hermitian symmetry is proposed to store digital data in a tiny area of a medium. In general, reducing a recording area with an aperture leads to the improvement in the storage capacity of holographic data storage. Conventional holographic data storage systems however have a limitation in reducing a recording area. This limitation is called a Nyquist size. Unlike the conventional systems, our proposed system can overcome the limitation with the help of a digital holographic technique and digital signal processing. Experimental result shows that the proposed system can record and retrieve a hologram in a smaller area than the Nyquist size on the basis of Hermitian symmetry.

摘要

提出了基于厄米对称性的数字超分辨率全息数据存储方法,用于在介质的微小区域内存储数字数据。一般来说,通过孔径减小记录区域会提高全息数据存储的容量。然而,传统的全息数据存储系统在减小记录区域方面存在限制。这种限制被称为奈奎斯特尺寸。与传统系统不同,我们提出的系统可以借助数字全息技术和数字信号处理克服这一限制。实验结果表明,所提出的系统能够基于厄米对称性在比奈奎斯特尺寸更小的区域内记录和检索全息图。

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