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3-D photopolymer disks for correlation and data storage, and cross-talk in volume holographic memories

机译:用于相关和数据存储的3-D光聚合物盘,以及体全息存储器中的串扰

摘要

This thesis considers the optical storage and processing of data using volume holography. First, cross-talk noise due to geometrical considerations is calculated for volume holographic memories. Cross-talk is due to energy diffracted from non-Bragg matched gratings. The SNR (signal-to-noise-ratio) of holographic memories due to cross-talk noise is calculated for Fourier transform holograms stored by angle, wavelength, phase-coded, and rotational multiplexing methods. Considerations include page size, geometry, angular bandwidth of the optical system, wavelength of the light used, material size, spatial light modulator (SLM) contrast, and the phase of the image plane. The SNR for angle multiplexed image plane holograms is also calculated and compared to the results for Fourier transformed angle multiplexed holograms. A comparison of the various multiplexing methods based on cross-talk is presented, and then the effect of geometry and material dynamic range is included to determine when cross-talk will be the dominant noise source. The use of photopolymers as a holographic element is then presented. The recording characteristics of the DuPont photopolymer are described and a method of multiplexing multiple holograms in the photopolymer is given. A new method for multiplexing holograms (called peristrophic multiplexing) is described. This method significantly increases the storage capacity of thin films. After this, a 3-D disk-based correlator and storage device using the photopolymer is described and demonstrated. In this device, holograms are multiplexed at a given spot and then disk rotation/head motion are used to access multiple spots on the disk. Theoretical correlation speed, read-out rates, and the storage capacity of the 3-D disk as limited by geometry and laser power are given.
机译:本文考虑使用体积全息术对数据进行光学存储和处理。首先,为体积全息存储器计算由于几何因素而引起的串扰噪声。串扰是由于能量从非布拉格匹配光栅衍射而来的。对于通过角度,波长,相位编码和旋转复用方法存储的傅立叶变换全息图,计算了由于串扰噪声引起的全息存储器的SNR(信噪比)。考虑因素包括页面大小,几何形状,光学系统的角带宽,所用光的波长,材料大小,空间光调制器(SLM)对比度以及像平面的相位。还计算了角度复用图像平面全息图的SNR,并将其与傅里叶变换角度复用全息图的结果进行比较。比较了基于串扰的各种复用方法,然后包括了几何形状和材料动态范围的影响,以确定何时串扰将成为主要的噪声源。然后提出使用光敏聚合物作为全息元件。描述了杜邦光敏聚合物的记录特性,并给出了在光敏聚合物中多重全息图的复用方法。描述了一种用于全息图复用的新方法(称为蠕变复用)。该方法显着增加了薄膜的存储容量。此后,描述并说明了使用光敏聚合物的基于3-D磁盘的相关器和存储设备。在此设备中,全息图在给定点处多路复用,然后使用磁盘旋转/磁头移动来访问磁盘上的多个点。给出了受几何形状和激光功率限制的3D磁盘的理论相关速度,读出率和存储容量。

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    Curtis Kevin R.;

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  • 年度 1994
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