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Progress in second-generation holographic data storage

机译:第二代全息数据存储的进展

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Holographic data storage (HDS) remains an attractive technology for big data. We report on recent results achieved with a demonstrator platform incorporating several new second-generation techniques for increasing HDS recording density and speed. This demonstrator has been designed to achieve densities that support the multi-terabyte storage capacities required for a competitive product. It leverages technology from an existing state-of-the-art pre-production prototype, while incorporating a new optical head designed to demonstrate several new technical advances. The demonstrator employs the new technique of dynamic aperture multiplexing in a monocular architecture. In a previous report, a monocular system employing angle-polytopic multiplexing achieved a recording density over 700 Gbit/in~2, exceeding that of contemporaneously shipping hard drives. Dynamic aperture multiplexing represents an evolutionary improvement with the potential to increase this figure by over 200%, while still using proven angle-polytopic multiplexing in a monocular architecture. Additionally, the demonstrator is capable of two revolutionary advances in HDS technology. The first, quadrature homodyne detection, enables the use of phase shift keying (PSK) for signal encoding, which dramatically improves recording intensity homogeneity and increases SNR. The second, phase quadrature holographic multiplexing, further doubles density by recording pairs of holograms in quadrature (QPSK encoding). We report on the design and construction of the demonstrator, and on the results of current recording experiments.
机译:全息数据存储(HDS)仍然是大数据的一种有吸引力的技术。我们报告了演示器平台最近的成果,该演示器平台集成了几种新的第二代技术,可用于提高HDS记录密度和速度。设计该演示器的目的是为了达到支持竞争产品所需的数TB的存储容量的密度。它利用了现有最先进的预生产原型的技术,并结合了旨在展示多项新技术进步的新型光学头。演示者在单眼架构中采用了动态孔径多路复用的新技术。在以前的报告中,采用角度多位复用的单眼系统实现了超过700 Gbit / in〜2的记录密度,超过了同期运输硬盘的记录密度。动态光圈多路复用代表了一种进化上的改进,有可能将该数字增加200%以上,同时仍在单眼架构中使用成熟的角度多面体多路复用。此外,该演示器在HDS技术方面具有两项革命性的进步。首先,正交零差检测可将相移键控(PSK)用于信号编码,从而显着改善记录强度的均匀性并提高SNR。第二个相位正交全息复用,通过以正交方式(QPSK编码)记录成对的全息图,进一步使密度加倍。我们报告了演示器的设计和构造以及当前记录实验的结果。

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