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Compensation of hologram distortion by controlling defocus component in reference beam wavefront for angle multiplexed holograms

机译:通过控制参考光束波阵面中散焦分量来补偿角度复用全息图的全息图失真

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摘要

Holographic memory has the potential to function as a recording system with a large capacity and high data-transfer-rate. Photopolymer materials are typically used as a write-once recording medium. When holograms are recorded on this medium, they can distort due to shrinkage or expansion of the materials, which degrades the reconstructed image and causes a higher bit error rate (bER) of the reproduced data. We propose optically compensating for hologram distortion by controlling aberration components in the reference beam wavefront while reproducing data, thereby improving the reproduced data quality. First, we investigated the relation between each aberration component of the reference beam and the signal to noise ratio (SNR) of the reproduced data using numerical simulation and found that horizontal tilt and the defocus component affect the SNR. Next, we experimentally evaluated the reproduced data by controlling the defocus component in the reference beam and found that the bER of the reproduced data could be decreased by controlling the defocus center with respect to the hologram position and phase modulation depth of the defocus component. Then, we investigated a practical control method of the defocus component using an evaluation value similar to the definition of the SNR for actual data reproduction from holograms. Using a defocus controlled wavefront enabled us to decrease the bER from 3.54 x 10^-3 with a plane wave to 3.14 x 10^-4. We also investigated how to reduce the bERs of reproduced data in angle multiplexed holograms. By using a defocus controlled wavefront to compensate for hologram distortion on the 40th data page in 80-page angle multiplexed holograms, the bERs of all pages could be decreased to less than 1x10^-3. We showed that controlling the defocus component is an effective way to compensate for hologram distortion and to decrease the bER of reproduced data in holographic memory.
机译:全息存储器有潜力用作具有大容量和高数据传输率的记录系统。光敏聚合物材料通常用作一次写入记录介质。当全息图记录在该介质上时,由于材料的收缩或膨胀,全息图可能会变形,从而使重建的图像质量下降,并导致复制数据的误码率更高(bER)。我们提出通过在再现数据的同时控制参考光束波前中的像差分量来光学补偿全息图失真,从而提高再现的数据质量。首先,我们使用数值模拟研究了参考光束的每个像差分量与再现数据的信噪比(SNR)之间的关系,发现水平倾斜和散焦分量会影响SNR。接下来,我们通过控制参考光束中的散焦分量对复制数据进行了实验评估,发现可以通过控制散焦中心相对于散焦分量的全息图位置和相位调制深度来降低复制数据的bER。然后,我们研究了一种散焦分量的实际控制方法,该方法使用的评估值与从全息图实际再现数据的SNR定义相似。使用散焦控制的波前使我们能够将bER从平面波的3.54 x 10 ^ -3降低到3.14 x 10 ^ -4。我们还研究了如何减少角度复用全息图中复制数据的bER。通过使用散焦控制的波前来补偿80页角度多路复用全息图中第40个数据页上的全息图失真,所有页面的bER可以减小到小于1x10 ^ -3。我们表明,控制散焦分量是补偿全息图失真并减少全息存储器中复制数据的bER的有效方法。

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