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Cavity enhanced eigenmode multiplexing for volume holographic data storage

机译:腔增强本征模式多路复用,用于体积全息数据存储

摘要

Previously, we proposed and experimentally demonstrated enhanced recording speeds by using a resonant optical cavity to semi-passively increase the reference beam power while recording image bearing holograms. In addition to enhancing the reference beam power the cavity supports the orthogonal reference beam families of its eigenmodes, which can be used as a degree of freedom to multiplex data pages and increase storage densities for volume Holographic Data Storage Systems (HDSS). While keeping the increased recording speed of a cavity enhanced reference arm, image bearing holograms are multiplexed by orthogonal phase code multiplexing via Hermite-Gaussian eigenmodes in a Fe: LiNbO3 medium with a 532 nm laser at two Bragg angles for expedited recording of four multiplexed holograms. 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 modifications to current angular multiplexing HDSS.
机译:以前,我们提出并通过实验证明了通过使用共振光学腔半被动地增加参考光束功率,同时记录带有图像的全息图,可以提高记录速度。除了增强参考光束功率外,腔还支持其本征模的正交参考光束族,该族可以用作自由度来复用数据页并增加体积全息数据存储系统(HDSS)的存储密度。在保持腔增强参考臂的增加记录速度的同时,通过Hermite-Gaussian本征模式在Fe:LiNbO3介质中以532 nm激光在两个布拉格角通过正交相位码复用来复用图像承载全息图,以加快四个复用全息图的记录。我们通过实验证实,写入速率平均提高了1.1,页面串扰约为2.5%。这种混合多路复用开辟了一条途径,可在增加存储密度的同时将对当前角度多路复用HDSS的修改降至最低。

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