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Effects of multilevel phase masks on interpixel cross talk in digital holographic storage

机译:多级相位掩模对数字全息存储中像素间串扰的影响

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摘要

We study the interpixel cross talk introduced to digital holographic data storage by use of a multilevel phase mask at the data-input plane. We evaluate numerically the intensity distribution at the output detector for Fourier plane hologram storage in a limited-aperture storage medium. Only the effect at an output pixel of interpixel cross talk from the four horizontal and vertical neighboring pixels is considered, permitting systematic evaluation of all possibilities. For random two-level and pseudorandom six-level phase masks, the influence of the pixel fill factor, as well as the aperture size of the storage medium, is studied. Our simulations show that, for a given aperture size, a random two-level mask is more susceptible to interpixel cross talk than is a pseudorandom six-level mask. Decreasing the pixel fill factor below 94% with a pseudorandom six-level phase mask makes it theoretically possible to have a system with no errors from interpixel cross talk if one particular 5-pixel pattern is forbidden through modulation coding. Reducing the input fill factor below 85% means that no patterns need to be excluded.# 1997 Optical Society of America
机译:我们研究了通过在数据输入平面使用多级相位掩膜引入数字全息数据存储的像素间串扰。我们在有限孔径存储介质中对傅立叶平面全息图存储在输出检测器上的强度分布进行数值评估。仅考虑来自四个水平和垂直相邻像素的像素间串扰的输出像素的影响,从而允许系统评估所有可能性。对于随机的两级和伪随机的六级相位掩模,研究了像素填充因子的影响以及存储介质的孔径大小。我们的仿真表明,对于给定的孔径尺寸,随机的两级掩模比伪随机的六级掩模更容易受到像素间串扰的影响。如果通过调制编码禁止一个特定的5像素模式,则使用伪随机六级相位掩膜将像素填充率降低到94%以下,就可以在理论上实现一个没有像素间串扰错误的系统。将输入填充系数降低到85%以下意味着无需排除任何图案。#1997美国光学学会

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