Directional Coupler as an Electro-Optically Controlled Wavelength Division Demultiplexer

A. Zaghloul
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Abstract

The number of passbands of the bandpass filter increases with the increasing of the difference of the propagation constants of the three waveguides of the directional coupler (i.e. electro-optically controlled). The allowed wavelengths (signals) which can be transmitted through the coupler's waveguides (wavelength division demultiplexer, WDDM) become very large with asymmetric electrooptic materials. Then the problem of length of WDDM is treated by electro-optical control. In case of symmetric electrooptic materials of the three waveguides, the maximum number of the allowed signals occurrs with BaTiO3. BaTiO3, LiNbO3 and BaTiO3 are the best asymmetric materials. The design procedure of WDDM is done. The numerical results with five different electrooptic materials are presented as design curves.
作为电光控制波分解复用器的定向耦合器
带通滤波器的通带数随着定向耦合器(即电光控制)三个波导的传播常数之差的增加而增加。使用不对称电光材料,可以通过耦合器波导(波分解复用器,WDDM)传输的允许波长(信号)变得非常大。然后采用光电控制的方法处理WDDM的长度问题。在三波导对称电光材料中,BaTiO3的允许信号数最大。BaTiO3、LiNbO3和BaTiO3是最好的非对称材料。给出了WDDM的设计步骤。以设计曲线的形式给出了五种不同电光材料的数值计算结果。
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