首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Analysis of a hybrid micro/macro-optical method for distortion removal in free-space optical interconnections
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Analysis of a hybrid micro/macro-optical method for distortion removal in free-space optical interconnections

机译:自由空间光互连中用于消除畸变的混合微/微光学方法的分析

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Eikonal analyses are applied to a hybrid micro/macro-optical shuffle interconnection approach that minimizes distortion in a multichip smart-pixel shuffle interconnection system. The optical system uses off-axis imaging elements to link clusters of dense arrays of vertical-cavity surface-emitting laser (VCSEL) sources to matching clusters within arrays of detectors. A critical requirement for such a system is that the images of the two-dimensional arrays of the VCSELs must be registered on their associated detector arrays with a precision of the order of 10 μm across the entire multichip array. The hybrid approach exploits the typical narrow-beam cone angles of VCSELs by use of beam-deflecting micro-optics to create a distortion-canceling symmetry about a central aperture in the optical system for each VCSEL-detector link. The second- and third-order aberrations of the plane-symmetric system created by the global off-axis imaging system are analyzed. The results prove that the hybrid concept cancels distortion and minimizes the spot size at the detector array plane.
机译:Eikonal分析应用于混合微/微光学混洗互连方法,该方法可最大程度地减少多芯片智能像素混洗互连系统中的失真。光学系统使用离轴成像元件将垂直腔面发射激光器(VCSEL)源的密集阵列的簇链接到检测器阵列内的匹配簇。对于这样的系统的关键要求是,VCSEL的二维阵列的图像必须在整个多芯片阵列上以10μm量级的精度记录在其关联的检测器阵列上。混合方法通过使用光束偏转微光学器件来为每个VCSEL检测器链路在光学系统中的中心孔周围创建消除失真的对称性,从而利用了VCSEL的典型窄光束锥角。分析了由全局离轴成像系统创建的平面对称系统的二阶和三阶像差。结果证明,混合概念消除了失真,并使检测器阵列平面上的光斑尺寸最小。

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