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首页> 外文期刊>Journal of Computational Electronics >Simulation of a high speed interferometer optical modulator in polymer materials
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Simulation of a high speed interferometer optical modulator in polymer materials

机译:聚合物材料中高速干涉仪光学调制器的仿真

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摘要

In this work, the design and simulation of a high speed (300 GHz) electro-optic modulator operating at 1550-nm wavelength is presented. As electro-optic active material, a nonlinear optical polymer with highly nonlinear chromophores dispersed in an amorphous polycarbonate is used. Optimization of modulator geometrical structure and extraction of device performance parameters are obtained by 3D simulations. Finite Element Method has been exploited for the solution of Laplace equation to calculate the microwave properties of polymer-based modulator and to design its electrodes. The modeling procedure has been validated by comparison with experimental results presented in literature.
机译:在这项工作中,介绍了工作在1550 nm波长的高速(300 GHz)电光调制器的设计和仿真。作为电光活性材料,使用具有高度非线性生色团分散在无定形聚碳酸酯中的非线性光学聚合物。通过3D仿真可获得调制器几何结构的优化和设备性能参数的提取。有限元方法已被用于拉普拉斯方程的求解,以计算基于聚合物的调制器的微波特性并设计其电极。通过与文献中提供的实验结果进行比较,已验证了建模过程。

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