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High density collinear holographic data storage system

机译:高密度共线全息数据存储系统

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摘要

Holographic data storage system (HDSS) has been a good candidate for a volumetric recording technology, due to their large storage capacities and high transfer rates, and have been researched for tens of years after the principle of holography was first proposed. However, these systems, called conventional 2-axis holography, still have essential issues for commercialization of products. Collinear HDSS, in which the information and reference beams are modulated co-axially by the same spatial light modulator (SLM), as a new read/write method for HDSS are very promising. With this unique configuration, the optical pickup can be designed as small as DVDs, and can be placed on one side of the recording media (disc). In the disc structure, the preformatted reflective layer is used for the focus/tracking servo and reading address information, and a dichroic mirror layer is used for detecting holographic recording information without interfering with the preformatted information. A 2-dimensional digital page data format is used and the shift-multiplexing method is employed to increase recording density. As servo technologies are being introduced to control the objective lens to be maintained precisely to the disc in the recording and reconstructing process, a vibration isolator is no longer necessary. Collinear holography can produce a small, practical HDSS more easily than conventional 2-axis holography. In this paper, we introduced the principle of the collinear holography and its media structure of disc. Some results of experimental and theoretical studies suggest that it is a very effective method. We also discussed some methods to increase the recording density and data transfer rates of collinear holography.
机译:由于全息数据存储系统(HDSS)的大存储容量和高传输率,它已成为体积记录技术的良好候选者,并且在首次提出全息原理之后已经进行了数十年的研究。但是,这些被称为常规2轴全息照相的系统对于产品的商业化仍然存在一些基本问题。共线HDSS作为一种新的HDSS读/写方法,其中信息光束和参考光束由相同的空间光调制器(SLM)同轴地进行调制。通过这种独特的配置,光学拾波器可以设计得与DVD一样小,并且可以放置在记录介质(光盘)的一侧。在盘结构中,预格式化的反射层用于聚焦/跟踪伺服和读取地址信息,而二向色镜层用于检测全息记录信息而不会干扰预格式化的信息。使用二维数字页面数据格式,并且采用移位多路复用方法来增加记录密度。由于引入了伺服技术来控制物镜以在记录和重建过程中精确地保持在光盘上,因此不再需要隔振器。共线全息术比常规的2轴全息术更容易产生小型,实用的HDSS。本文介绍了共线全息的原理及其光盘的介质结构。实验和理论研究的一些结果表明,这是一种非常有效的方法。我们还讨论了增加共线全息照相的记录密度和数据传输速率的一些方法。

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