Dynamics of composite grating in photorefractive SBN:60

H. Sasaki, J. Ma, Y. Fainman, S. H. Lee
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Abstract

Dynamic photorefractive memories that store image information multiplexed in a photorefractive volume are promising for parallel information processing and computing due to their large storage capacity, fast access, and read/write/erase capability1. Incoherent erasure process can be used for updating these dynamic memories, but this process is much slower than the writing process. In contrast, selective erasure process2 based on superimposed recording of a π-phase-shifted image onto the old image is reported to be much faster than the incoherent erasure3. Arbitrary phase shift has also been investigated for optical interconnects4, assuming a grating with maximum refractive index modulation at the beginning of the selective erasure process. For dynamic photorefractive memory application it is important to understand the dynamics of the selective erasure process for multiplexed images, where each of them is characterized by a much smaller refractive index modulation. Dynamic photorefractive memory that uses π-phase-shifted selective erasure process has recently been implemented, demonstrating fast erasure capability5. In this manuscript, we analyze and confirm experimentally the dynamics of the erasure process. For simplicity and generality we assume two gratings with an arbitrary phase shift between them to be a composite grating, one being the old grating and another the new grating.
光折变SBN中复合光栅的动态特性:60
动态光折变存储器将图像信息多路存储在光折变体积中,由于其大存储容量、快速访问和读/写/擦除能力,有望用于并行信息处理和计算。非相干擦除过程可用于动态存储器的更新,但该过程比写入过程慢得多。相比之下,基于π相移图像在旧图像上叠加记录的选择性擦除过程比非相干擦除要快得多。假设在选择性擦除过程开始时具有最大折射率调制的光栅,也研究了光学互连的任意相移。对于动态光折变存储器的应用,了解多路复用图像的选择性擦除过程的动力学是很重要的,其中每个图像的特征是一个小得多的折射率调制。采用π相移选择性擦除过程的动态光折变存储器最近被实现,显示出快速擦除的能力5。在本文中,我们分析并实验证实了擦除过程的动力学。为了简单和一般的考虑,我们假设两个具有任意相移的光栅是一个复合光栅,其中一个是旧光栅,另一个是新光栅。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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