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CROP holographic storage media for optical data storage at greater than 100 bits/μm~2

机译:用于光学数据存储的裁剪全息存储介质大于100位/μm〜2

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Aprilis HMD-050-G-C-400 photopolymerizable holographic recording material for card and disk media, based upon cationic ring-opening polymerization (CROP), has been further optimized for recording in an increased film thickness of 400 μm. A storage density, S_(2D), of 150 bits/μm~2 for digital data recorded holographically as pages and a dynamic range of at least M/# = 22 have been achieved, which are substantially greater than previously reported for photopolymerizable media, while concurrently the inherent low shrinkage, high image fidelity and high sensitivity characteristics of the material have been retained. Dynamic range or cumulative grating strength, ∑ηi~(0.5), has been determined from co-locationally recorded peristrophic and planar-angle multiplexed 262 kbit data pages that exhibit low raw bit-error-rates (BER) having an average value of 1E-3 and 5.5E-3 for ~100 and ~150 bits/μm~2, respectively. Good Bragg selectivity consistent with the imaged thickness and sinc~2 function behavior is observed for the multiplexed digital data page holograms, and both the Bragg selectivity and the diffraction efficiency are stable without the need for post-imaging fixing procedures. Sensitivity during recording of digital data page holograms is in the range of 6.75 cm/mJ diminshing to 0.5 cm/mJ for 87% of the cumulative grating strength that is attained during co- locational recording.
机译:Aprilis HMD-050-G-C-400基于阳离子开环聚合(裁剪)的卡片和盘介质的光聚合全息记录材料进一步优化以增加400μm的薄膜厚度。已经实现了全部记录的数字数据的存储密度,S_(2D),其数字数据作为页面和至少M /#= 22的动态范围,这基本上大于以前报告的光聚合介质,同时保留了材料的固有的低收缩,高图像保真度和高灵敏度特性。动态范围或累积光栅强度,σηI〜(0.5)已从共同定义记录的蠕动和平面角复用262kbit数据页中确定,其表现出具有平均值1E的低原始误码率(BER) -3和5.5E-3分别为〜100和〜150位/μm〜2。对于多路复用的数字数据页全息图,观察到与成像厚度和SINC〜2功能行为一致的良好布拉格选择性,并且布拉格选择性和衍射效率都稳定,而无需后成像定影程序。数字数据页面记录期间的灵敏度全息图在6.75cm / mJ的范围内,调用0.5cm / mj,占总卷曲的累积光栅强度的87%。

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