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Protein-based volumetric memories

机译:基于蛋白质的体积记忆

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摘要

Abstract: This paper will explore the use of the protein, bacteriorhodopsin, as the photoactive recording medium in an optical three-dimensional memory. Although this protein has been used previously as the photoactive medium in a number of three-dimensional architectures (e.g., holographic and two- photon), a sequential one-photon volumetric architecture employing a photochemical branching reaction characteristic of the protein is currently showing the most promise. This unique branching reaction allows for long-term data storage by the protein, and rigorously excludes unwanted photochemistry. During the past two years, two prototypes have been constructed, and the preliminary results look promising. The use of chemical modification and genetic engineering of the protein has improved data reliability by roughly five-fold, but reliability remains an issue. Some of the key problems will be discussed. In addition, the use of gray-scale and polarization multiplexing to increase the storage capacity will be examined. !25
机译:摘要:本文将探讨细菌视紫红质(bacteriorhodopsin)蛋白质在光学三维存储器中作为光敏记录介质的用途。尽管此蛋白先前已在许多三维结构(例如,全息和双光子)中用作光敏介质,但采用该蛋白的光化学分支反应特性的顺序单光子体积结构目前显示最多诺言。这种独特的分支反应可以使蛋白质长期存储数据,并严格排除不需要的光化学反应。在过去的两年中,已经构造了两个原型,初步结果看起来很有希望。蛋白的化学修饰和基因工程的使用将数据可靠性提高了大约五倍,但可靠性仍然是一个问题。将讨论一些关键问题。另外,将研究使用灰度和偏振复用来增加存储容量。 !25

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