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Experimental validation of hybrid micro-macro optical method for distortion removal in multi-chip global free-space optical-interconnection systems

机译:混合微宏光学方法消除多芯片全球自由空间光互连系统中畸变的实验验证

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摘要

Experimental validation of a distortion removal technique for multi-chip free-space optical shuffle interconnections is presented. The free-space fabric links dense two-dimensional arrays of vertical cavity surface emitting laser(s) (VCSEL)(s) and detectors and must achieve full field registration on the order of 10 microns across the entire array. The new hybrid micro-macro optical concept realizes the required high-registration accuracy by simultaneously eliminating distortion in each of the interleaved off-axis imaging systems that comprise the complete fabric. This is achieved by exploiting the typically low numerical aperture of VCSELs. Individually tailored beam-deflecting micro-optical elements were used to create symmetry about a central aperture for VCSEL beams in the optical system. Experiments were developed to quantify the registration accuracy, the VCSEL images, and the associated spot sizes. The experimental results show that beam steering can be implemented to remove distortion in off-axis free-space optical-interconnection systems. (C) 2002 Optical Society of America. [References: 17]
机译:提出了一种用于多芯片自由空间光学混洗互连的失真消除技术的实验验证。自由空间结构链接了垂直腔表面发射激光器(VCSEL)和探测器的密集二维阵列,并且必须在整个阵列上实现10微米量级的全场配准。通过同时消除构成完整织物的每个交错轴外成像系统中的畸变,新的混合微微光学概念可实现所需的高套准精度。这是通过利用VCSEL通常较低的数值孔径来实现的。分别定制的光束偏转微光学元件用于在光学系统中围绕VCSEL光束的中心孔径创建对称性。开发实验以量化配准精度,VCSEL图像和相关的光斑大小。实验结果表明,可以实现光束转向以消除离轴自由空间光互连系统中的畸变。 (C)2002年美国眼镜学会。 [参考:17]

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