Applications of Electro-Optic Polymer Integrated Optic Devices

G. F. Lipscomb, R. Lytel, A. Ticknor
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Abstract

A decade of research in organic and polymeric nonlinear optical (NLO) materials and devices has now begun to reach fruition. In this paper we will concentrate on the progress that has been made in the application of organic materials, both passive and active, to integrated optic waveguide devices. Similar organic polymers can be used to fabricate passive waveguide devices, such as splitters or filters, and active devices based on the thermo-optic (TO) or the electro-optic (EO) effects. Proof-of-principle experiments have demonstrated that polymer materials offer potential advantages for integrated optics applications in the areas of process, fabrication, and performance. Work has now begun to utilize these advantages in specific applications in a wide variety of industries, including telecom, datacom and CATV. We will first give an introduction to polymeric waveguides, followed by an overview of the current performance achievable with Akzo electro-optic polymers, and then briefly describe how components derived from these materials can be used in specific applications.
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电光聚合物集成光学器件的应用
有机和聚合物非线性光学(NLO)材料和器件的十年研究现在已经开始取得成果。本文将重点介绍无源和有源有机材料在集成光波导器件中的应用进展。类似的有机聚合物可用于制造无源波导器件,如分路器或滤波器,以及基于热光学(to)或电光(EO)效应的有源器件。原理验证实验表明,聚合物材料在工艺、制造和性能方面为集成光学应用提供了潜在的优势。现在已经开始在包括电信、数据通信和有线电视在内的各种行业的具体应用中利用这些优势。我们将首先介绍聚合物波导,然后概述阿克苏电光聚合物目前可实现的性能,然后简要描述如何在特定应用中使用这些材料衍生的组件。
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