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全息数据存储系统中的腔增强本征模与角混合复用

Cavity-enhanced eigenmode and angular hybrid multiplexing in holographic data storage systems.

作者信息

Miller Bo E, Takashima Yuzuru

出版信息

Opt Express. 2016 Dec 26;24(26):29465-29476. doi: 10.1364/OE.24.029465.

Abstract

Resonant optical cavities have been demonstrated to improve energy efficiencies in Holographic Data Storage Systems (HDSS). The orthogonal reference beams supported as cavity eigenmodes can provide another multiplexing degree of freedom to push storage densities toward the limit of 3D optical data storage. While keeping the increased energy efficiency of a cavity enhanced reference arm, image bearing holograms are multiplexed by orthogonal phase code multiplexing via Hermite-Gaussian eigenmodes in a Fe:LiNbO medium with a 532 nm laser at two Bragg angles. We experimentally confirmed write rates are enhanced by an average factor of 1.1, and page crosstalk is about 2.5%. This hybrid multiplexing opens up a pathway to increase storage density while minimizing modification of current angular multiplexing HDSS.

摘要

共振光学腔已被证明可提高全息数据存储系统(HDSS)的能量效率。作为腔本征模支持的正交参考光束可以提供另一种复用自由度,将存储密度推向三维光学数据存储的极限。在保持腔增强参考臂能量效率提高的同时,通过在532 nm激光下以两个布拉格角在Fe:LiNbO介质中通过厄米 - 高斯本征模进行正交相位码复用,对承载图像的全息图进行复用。我们通过实验证实写入速率平均提高了1.1倍,页面串扰约为2.5%。这种混合复用开辟了一条增加存储密度的途径,同时将当前角度复用HDSS的修改降至最低。

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