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Incoherent/coherent source array for multiplexed holographic recording and readout

机译:非相干/相干源阵列,用于多路全息记录和读出

摘要

The present invention relates to a novel source array comprising a plurality of sources of optical illumination that are at once both individually coherent and mutually incoherent. A primary application of such a source array is to provide the requisite optical source beams in a novel architecture and associated apparatus for the development of highly multiplexed photonic interconnection networks and holographic optical elements with maximum optical throughput efficiency and minimum interchannel crosstalk, based on parallel incoherent/coherent holographic recording and readout principles that are described herein. In one embodiment, the source array is configured from a plurality of coherent sources of illumination; in a second embodiment, a single source of coherent illumination is expanded to illuminate a phase modulator array, within which each separate phase modulator is driven at a distinct oscillation frequency such that the set of resultant modulated beams exhibits mutual incoherence. Such incoherent/coherent source arrays are critical for providing arbitrarily weighted and independent interconnections, which in turn are of potential importance in the development of neuro-optical computers, as well as photonic interconnection networks and multiplexed holographic optical elements. In addition, the extremely difficult problem of copying the contents of a three-dimensional holographic storage device in one step is enabled by utilization of the incoherent/coherent source arrays that are the key features of the present invention.
机译:本发明涉及一种新颖的光源阵列,该光源阵列包括多个同时彼此相干和互不相干的光学照明源。这种源阵列的主要应用是在新颖的体系结构和相关设备中提供必要的光源束,以开发基于并行非相干的,具有最大光吞吐效率和最小通道间串扰的高度复用光子互连网络和全息光学元件。在此描述的/相干全息记录和读出原理。在一实施例中,源阵列由多个相干的照明源构成;每个照明源均由多个光源组成。在第二实施例中,相干照明的单个光源被扩展以照亮相位调制器阵列,在该相位调制器阵列中,每个单独的相位调制器以不同的振荡频率被驱动,使得所得调制光束的集合表现出互不相干。这种非相干/相干源阵列对于提供任意加权和独立的互连至关重要,而这又在神经光学计算机,光子互连网络和多路复用全息光学元件的开发中具有潜在的重要性。另外,通过利用作为本发明的关键特征的非相干/相干源阵列,能够一步一步地复制三维全息存储设备的内容的极其困难的问题。

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