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A fiber-integrated optical component fabricated via photopolymerization: Mode-selective grating coupler

机译:通过光聚合制造的集成光纤的光学组件:模式选择光栅耦合器

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摘要

We demonstrate a mode-selective directional coupler based on a grating structure, which is fabricated by laser direct-writing on a photopolymer thin film. The device is implemented on the flat planar surface of the D-Fiber, enabling fiber integration, where an Acrylamide/Polyvinyl Alcohol based photopolymer material is used in the fabrication of the device. While the refractive index modulation properties of the polymer material are well known, surface relief and corrugation properties due to photopolymerization are investigated in this study. Theoretical model of the device is presented together with the optimization and simulation results of the final device; experimental results have been found to be in good agreement with simulations.
机译:我们演示了一种基于光栅结构的模式选择定向耦合器,该结构是通过在光敏聚合物薄膜上进行激光直接写入而制成的。该设备在D纤维的平坦平面上实现,从而实现了纤维集成,其中在设备的制造中使用了基于丙烯酰胺/聚乙烯醇的光敏聚合物材料。尽管众所周知聚合物材料的折射率调节特性,但在这项研究中研究了由于光聚合引起的表面起伏和波纹特性。给出了设备的理论模型以及最终设备的优化和仿真结果。实验结果与仿真结果吻合良好。

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