Bayer MaterialScience AG, Leverkusen, Germany.
Angew Chem Int Ed Engl. 2011 May 9;50(20):4552-73. doi: 10.1002/anie.201002085. Epub 2011 Apr 29.
Optical data storage has had a major impact on daily life since its introduction to the market in 1982. Compact discs (CDs), digital versatile discs (DVDs), and Blu-ray discs (BDs) are universal data-storage formats with the advantage that the reading and writing of the digital data does not require contact and is therefore wear-free. These formats allow convenient and fast data access, high transfer rates, and electricity-free data storage with low overall archiving costs. The driving force for development in this area is the constant need for increased data-storage capacity and transfer rate. The use of holographic principles for optical data storage is an elegant way to increase the storage capacity and the transfer rate, because by this technique the data can be stored in the volume of the storage material and, moreover, it can be optically processed in parallel. This Review describes the fundamental requirements for holographic data-storage materials and compares the general concepts for the materials used. An overview of the performance of current read-write devices shows how far holographic data storage has already been developed.
自 1982 年问世以来,光数据存储技术对日常生活产生了重大影响。光盘(CD)、数字通用光盘(DVD)和蓝光光盘(BD)是通用的数据存储格式,其优点是数字数据的读写不需要接触,因此不会磨损。这些格式允许方便、快速的数据访问、高传输速率以及无需电力的数据存储,并且总体归档成本较低。该领域的发展动力是对不断增加的数据存储容量和传输速率的需求。利用全息原理进行光数据存储是一种增加存储容量和传输速率的优雅方式,因为通过该技术,数据可以存储在存储材料的体积中,而且可以进行光学并行处理。这篇综述描述了全息数据存储材料的基本要求,并比较了所使用材料的一般概念。当前读写设备的性能概述展示了全息数据存储技术已经取得的进展。