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Capacity considerations for multiplexed holographic optical data storage

机译:多路复用全息光学数据存储容量注​​意事项

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The capacity of volume holographic data storage depends on the multiplexing efficiency of input holographic data arrays or pages. We compare this page-packing capacity of two common approaches: angle, and wavelength multiplexing. For maximal page packing the angular separation between the reference and signal beam incidence in the angle and wavelength multiplexing methods should be 90$DGR and 180$DGR@, respectively. We find that in these optimal arrangements both methods can multiplex a similar number of paraxial data-page signals, which is comparable to conceptual storage capacity limits derived from considerations of resolution in three-dimensions. In practice, the high number of multiplexed data pages predicted here will be compromised by material-related noise sources.
机译:体积全息数据存储容量取决于输入全息数据阵列或页面的复用效率。我们将此页面包装容量与两个常见方法进行比较:角度和波长复用。对于最大页面包装,角度和波长复用方法的参考和信号光束入射之间的角度分别应分别为90 $ DGR和180 $ DGR @。我们发现,在这些最佳布置中,这两种方法都可以复用与概念存储容量限制相当的概率存储容量限制,这些信号与三维分辨率的考虑因素相当。在实践中,这里预测的大量多路复用数据页将被材料相关的噪声源损害。

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