Direct observation and simultaneous use of linear and quadratic electro-optical effects

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Date
2020
Volume
53
Issue
12
Journal
Journal of physics : D, Applied physics
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Publisher
Bristol : IOP Publ.
Abstract

We report on the direct observation and simultaneous use of the linear and quadratic electro-optical effect and propose a method by which higher-order susceptibilities of electro-optical materials can be determined. The evaluation is based on the separation of the second- and third-order susceptibilities and the experimental technique uses a slot waveguide ring resonator fabricated in integrated photonic circuit technology, which is embedded by a guest-host polymer system consisting of the azobenzene dye Disperse Red 1 in a poly(methyl methacrylate) matrix as an active electro-optical material. The contribution of both effects on the electro-optical response under the influence of static and time-varying electrical fields is investigated. We show that the quadratic electro-optical effect has a significant influence on the overall electro-optical response even with acentric molecular orientated molecules. Our findings have important implications for developing electro-optical devices based on polymer-filled slot waveguides and give rise to advanced photonic circuits. © 2020 IOP Publishing Ltd.

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Steglich, P., Mai, C., Villringer, C., & Mai, A. (2020). Direct observation and simultaneous use of linear and quadratic electro-optical effects (Bristol : IOP Publ.). Bristol : IOP Publ. https://doi.org//10.1088/1361-6463/ab6059
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CC BY 3.0 Unported