基于聚合物的三维MMI分离器新概念

T. Mizera, D. Pudiš, A. Kuzma, P. Gašo, P. Micek, D. Seyringer
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引用次数: 1

摘要

鉴于光子元件小型化的发展趋势和对分光的需求,本文提出并仿真了一种波长为1550 nm的基于多模干涉的三维分光器。对优化后的MMI分配器进行了各种设计和各种参数的仿真。我们关注的是它在光纤上集成的可能性。设计的重点是一个可能的生产工艺,利用三维激光光刻为准备的实验。采用激光光刻直接写入工艺制备了MMI分路器,并通过近场测量对其输出特性进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New concept of 3D MMI splitters based on polymer
Due to the increasing trend of photonic element miniaturisation and the need for optical splitting, we propose and simulate a new type of three-dimensional (3D) optical splitter based on multimode interference (MMI) for the wavelength of 1550 nm. We present various designs and simulations of various parameters for the optimized MMI splitter. We focus on the possibility of its integration on an optical fiber. The design is focused on a possible production process using 3D laser lithography for the prepared experiments. The MMI splitter was prepared by laser lithography using direct writing process and finally investigated by output characterisation by the near-field measurement.
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