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Anamorphic and Local Characterization of a Holographic Data Storage System with a Liquid-Crystal on Silicon Microdisplay as Data Pager

机译:作为数据寻呼机的硅片微晶的全息数据存储系统的变形和局部表征

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摘要

In this paper, we present a method to characterize a complete optical Holographic Data Storage System (HDSS), where we identify the elements that limit the capacity to register and restore the information introduced by means of a Liquid Cristal on Silicon (LCoS) microdisplay as the data pager. In the literature, it has been shown that LCoS exhibits an anamorphic and frequency dependent effect when periodic optical elements are addressed to LCoS microdisplays in diffractive optics applications. We tested whether this effect is still relevant in the application to HDSS, where non-periodic binary elements are applied, as it is the case in binary data pages codified by Binary Intensity Modulation (BIM). To test the limits in storage data density and in spatial bandwidth of the HDSS, we used anamorphic patterns with different resolutions. We analyzed the performance of the microdisplay in situ using figures of merit adapted to HDSS. A local characterization across the aperture of the system was also demonstrated with our proposed methodology, which results in an estimation of the illumination uniformity and the contrast generated by the LCoS. We show the extent of the increase in the Bit Error Rate (BER) when introducing a photopolymer as the recording material, thus all the important elements in a HDSS are considered in the characterization methodology demonstrated in this paper.
机译:在本文中,我们介绍了一种表征完整光学全息数据存储系统(HDS)的方法,在那里我们识别限制借助于硅(LCOS)Microdisplay上的液体Cristal引入的能量和恢复引入的信息的元件。数据寻呼机。在文献中,已经表明,当周期光学元件在衍射光学应用中的LCOS微透视上寻址时,LCO具有变形和频率依赖性效果。我们测试了这种效果是否在应用于HDS的应用程序中,其中应用非周期性二进制元素,因为它是由二进制强度调制(BIM)编码的二进制数据页面的情况。要测试存储数据密度和HDS的空间带宽中的限制,我们使用具有不同分辨率的变形图案。我们使用适用于HDS的优点的图来分析了Micropisplay原位的性能。还通过所提出的方法证明了系统孔径的局部表征,这导致估计光照均匀性和LCO产生的对比度。当将光聚合物引入作为记录材料时,我们显示误码率(BER)增加的程度,因此在本文中证明的表征方法中考虑了HDS中的所有重要元素。

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