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Design of micro-optics array to realize two dimensional perfect shuffle transform

机译:实现二维完美混洗变换的微光学阵列设计

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摘要

Two-dimensional (2D) perfect shuffle transform (PST) plays an important role in optical communication and optical information processing due to very high space-bandwidth product (SBWP) and spatial degrees of freedom. The planar-array of micro-blazed grating has been proposed to realize 2D PST based on its interesting properties such as high diffraction efficiency, small size, high degree of integration, and easy to fabricate. 2D PST could be realized in free space through controling the etching direction and the period of micro-blazed grating, which results in signal beams can reach the desired spatial position. Unlike the conventional method depending on the operation of dividing, magnification, interlacing, and superimposing, this approach, which mainly relies on the diffractive properties of signal beams and the distribution of light intensity, presents a single diffractive element to perform 2D PST. Thus, this approach has the advantages of high energy efficiency, high feasibility, compact in structure, and easy to integrate. The theoretical analyses and the experimental results show that it should be helpful in optical interconnection network, especially, in PS omega network.
机译:由于非常高的空间带宽乘积(SBWP)和空间自由度,二维(2D)完美混洗变换(PST)在光学通信和光学信息处理中起着重要作用。已经提出了基于微闪光栅的平面阵列来实现二维PST,这是基于其有趣的特性,例如高衍射效率,小尺寸,高集成度和易于制造。通过控制刻蚀方向和微闪光栅的周期,可以在自由空间中实现2D PST,从而使信号束可以到达所需的空间位置。与依赖于分割,放大,隔行和叠加的操作的传统方法不同,该方法主要依靠信号束的衍射特性和光强度的分布,提出了一种用于执行2D PST的衍射元件。因此,该方法具有能源效率高,可行性高,结构紧凑,易于集成的优点。理论分析和实验结果表明,该方法对光互连网络特别是在PS omega网络中很有帮助。

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