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Towards Flexible Routing Schemes for Polymer Optical Interconnections on Printed Circuit Boards

机译:朝着印刷电路板上的聚合物光学互连的灵活路由方案

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Multilayer optical interconnects offer high interconnection densities and flexible routing schemes. Signals can be routed between the different layers, which can limit the number of cross-overs. In addition, the characteristics of 2D optoelectronic elements can be fully exploited. The alignment between the different optical elements is critical for the performance of the system. Efficient coupling structures are required to couple the light signals between two layers. We propose the use of laser ablated 45° mirrors, which are integrated with the waveguides. Two mirror configurations are proposed: one based on total internal reflection (TIR) and a metallized 45° mirror. A two layer optical structure is presented that contains multimode waveguides and micro-mirrors. The achievable alignment accuracy between the multimode waveguides and micro-mirrors in the two layers is in accordance with the results obtained from a numerical study. Experimental realizations of the mentioned structures and the first results on the loss measurements on the mirrors are presented.
机译:多层光学互连提供高互连密度和灵活的路由方案。信号可以在不同的层之间路由,这可以限制交叉的数量。另外,可以充分利用2D光电元件的特性。不同光学元件之间的对准对于系统的性能至关重要。需要有效的耦合结构来将光信号耦合到两层之间。我们提出使用激光烧蚀45°镜,该镜子与波导集成。提出了两种镜像配置:基于全内反射(TIR)和金属化45°镜子。提出了两层光学结构,其包含多模波导和微镜。两层中的多模波导和微镜之间的可实现的对准精度是根据从数值研究获得的结果。提出了上述结构的实验性和第一结果对镜子上的损耗测量结果。

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