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Erbium-Doped Polymer Waveguide Amplifiers for Board-Level Optical Interconnects

机译:用于板级光学互连的掺Polymer聚合物波导放大器

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Optical interconnects have an important role to play in next-generation high-performance electronic systems by enabling power-efficient high-speed board-level communication links. Polymer-based optical waveguides is a leading technology for integrating optical links onto standard printed circuit boards as it is sufficiently low cost and enables cost-effective manufacturing and assembly. Various polymer-based optical backplanes have been reported in recent years enabling different on-board interconnection architectures. However, all currently demonstrated systems are purely passive, which limits therefore the reach, complexity and functionality of these on-board systems. Here, we present recent simulation and experimental studies towards the development of Er-doped polymer-based waveguide amplifiers. Two different approaches to integrate Er-doped materials in siloxane polymer are investigated: (i) ultrafast laser plasma implantation of Er-doped glasses and (ii) solution-based dispersion of Er-doped nanoparticles. Experimental and simulation results on the achievable performance from such waveguide amplifiers are presented focusing on impact of the waveguide loss and upconversion on the gain figure.
机译:通过实现省电的高速板级通信链路,光互连在下一代高性能电子系统中起着重要作用。基于聚合物的光波导是一种将光链路集成到标准印刷电路板上的领先技术,因为它的成本足够低,并且可以经济高效地进行制造和组装。近年来,已报道了各种基于聚合物的光学背板,这些背板可实现不同的板载互连体系结构。但是,所有当前演示的系统都是纯被动系统,因此限制了这些车载系统的覆盖范围,复杂性和功能。在这里,我们目前对掺simulation聚合物基波导放大器的发展进行了最新的仿真和实验研究。研究了两种将掺Er的材料集成到硅氧烷聚合物中的不同方法:(i)掺Er的玻璃的超快激光等离子体注入和(ii)掺Er的纳米粒子的基于溶液的分散。针对这种波导放大器可实现的性能,给出了实验和仿真结果,重点是波导损耗和上变频对增益系数的影响。

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