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Read-write holographic memory with iron-doped lithium niobate

机译:含铁掺杂铌酸锂的读写全息存储器

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摘要

The response of iron doped lithium niobate under conditions corresponding to hologram storage and retrieval is described, and the material's characteristics are discussed. The optical sensitivity can be improved by heavy chemical reduction of lightly doped crystals such that most of the iron is in the divalent state, the remaining part being trivalent. The best reduction process found to be reproducible so far is the anneal of the doped crystal in the presence of a salt such as lithium carbonate. It is shown by analysis and simulation that a page-oriented read-write holographic memory with 1,000 bits per page would have a cycle time of about 60 ms and a signal-to-noise ratio of 27 db. This cycle time, although still too long for a practical system, represents an improvement of two orders of magnitude over that of previous laboratory prototypes using different storage media.
机译:描述了铁掺杂铌酸锂在对应于全息图存储和检索的条件下的响应,并讨论了材料的特性。可以通过对轻掺杂晶体进行重化学还原来提高光学灵敏度,以使大多数铁处于二价态,其余部分为三价。迄今为止,发现可重现的最佳还原工艺是在盐(如碳酸锂)存在下对掺杂晶体进行退火。通过分析和仿真显示,每页1,000位的面向页面的读写全息存储器的循环时间约为60 ms,信噪比为27 db。尽管对于实际系统而言,这个周期时间仍然太长,但与使用不同存储介质的先前实验室原型相比,代表了两个数量级的改进。

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