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Random Modulation in High Density Holographic Data Storage and Correlation Recognition System

机译:高密度全息数据存储和相关识别系统中的随机调制

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摘要

In the holographic data storage system, a shifting diffuser is employed in the reference beam to realize dynamic speckle multiplexing, while another vibrating diffuser is placed in the object beam to realize speckle modulation. These two methods can enlarge the storage capacity with high signal-to-noise rate. Speckle multiplexing can suppress the crosstalk due to multiple longitudinal modes of the small DPL laser. And speckle modulation in volume holographic correlators can suppress the diffraction sidelobes of output correlation signal along both vertical and horizontal direction. Another advantage of the speckle multiplexing and the speckle modulation is that the angular selectivity and the correlation peak are not sensitive to the thickness of the hologram. Finally a demonstration platform of compact holographic storage and correlation recognition system is briefly introduced in this paper.
机译:在全息数据存储系统中,在参考光束中使用移位扩散器以实现动态散斑复用,而在目标光束中放置另一个振动扩散器以实现散斑调制。这两种方法可以以高信噪比扩大存储容量。斑点多路复用可以抑制由于小型DPL激光器的多个纵向模式而引起的串扰。体全息相关器中的斑点调制可以抑制输出相关信号沿垂直和水平方向的衍射旁瓣。散斑复用和散斑调制的另一个优点是,角度选择性和相关峰对全息图的厚度不敏感。最后简要介绍了紧凑型全息存储及相关识别系统的演示平台。

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