Progress in Frequency Domain Optical Storage

F. Schellenberg, W. Moerner, M. Levenson, G. Bjorklund, D. J. Bernays
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Abstract

The phenomenon of persistent spectral hole burning allows the frequency of a tunable laser source to be utilized as an additional dimension for the organization of an optical data storage system.1 Potential gains of greater than a factor of 1000 in achievable storage densities over conventional optical storage are possible. In addition, extremely fast random access times can be achieved in the frequency dimension.
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频域光存储的研究进展
持续光谱孔燃烧现象允许可调谐激光源的频率被用作光学数据存储系统组织的附加维度在可实现的存储密度上,比传统光存储的潜在增益大于1000倍是可能的。此外,在频率维度上可以实现极快的随机访问时间。
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