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Fan-out routing and optical splitting techniques for compact optical interconnects using single-mode polymer waveguides

机译:使用单模聚合物波导的紧凑型光学互连的扇出布线和光分离技术

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摘要

Polymer waveguide (WG) S-bends are necessary for fan-out routing techniques and optical splitting in high-density optical interconnects. Designing and manufacturing of optimal S-bends are critical for minimizing optical link loss while maintaining overall size and layout constraints. Complete structural loss analysis is demonstrated theoretically and shown experimentally utilizing both radial and transitional loss in single-mode (SM) polymer WG radial arc, cosine, and raised-sine S-bend profiles. SM polymer WG straights were first fabricated to measure standard propagation loss. SM WG S-bends were fabricated incorporating straight lead-in and lead-out sections to incorporate transitional loss present in workable designs. S-bend designs were measured at different dimensions and matched to theoretical losses. Compact cosine and radial arc S-bends exhibited the lowest structure loss for low and high NA WGs, respectively. High-speed performance of SM WG straights and S-bends was measured at 10 Gbit/s demonstrating low error rate. Optical splitters designed with S-bends and tapers were also evaluated and fabricated. Trade-off between optimal loss and minimal device size is discussed.
机译:聚合物波导(WG)S弯对于扇出布线技术和高密度光学互连中的光分裂是必需的。最佳S形弯头的设计和制造对于最小化光链路损耗,同时保持整体尺寸和布局约束至关重要。完整的结构损耗分析在理论上得到证明,并在单模(SM)聚合物WG径向弧,余弦和正弦S形弯曲轮廓中利用径向损耗和过渡损耗进行了实验显示。首先制造SM聚合物WG直管,以测量标准传播损耗。 SM WG S型弯头是采用直的引入和引出部分制造的,以融合可行设计中存在的过渡损耗。 S形弯头设计在不同尺寸下进行测量,并与理论损耗相匹配。对于低和高NA WG,紧凑的余弦和径向弧S形弯分别表现出最低的结构损耗。 SM WG直线和S形弯头的高速性能以10 Gbit / s的速度测量,表明错误率较低。还评估并制造了具有S形弯曲和锥形的分光镜。讨论了最佳损耗和最小器件尺寸之间的折衷方案。

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