Eskandari Hossein, Majedi Mohammad Saeed, Attari Amir Reza
Appl Opt. 2017 Jul 10;56(20):5599-5606. doi: 10.1364/AO.56.005599.
The design of an optical waveguide coupler has several challenges, such as reflection losses at the interfaces of the coupler, material complexity for optical applications, and the coupling between arbitrary materials at the input and the output of the coupler. In this paper, for the first time to the best of our knowledge, we propose a solution to overcome the above difficulties. For this purpose, we introduce an auxiliary transformation function and an impedance scaling function. The auxiliary function specifies the matched dielectric materials at the input and output interfaces of the coupler, and the scaling function suppresses the reflections and makes the material nonmagnetic for transverse magnetic (TM) polarization. As a result, an optical waveguide coupler is designed that can ideally couple two waveguides with arbitrary dielectric materials and arbitrary cross sections using a nonmagnetic material. Validation of the design method is done by using COMSOL Multiphysics.
光波导耦合器的设计存在若干挑战,例如耦合器界面处的反射损耗、光学应用中的材料复杂性,以及耦合器输入和输出端任意材料之间的耦合。据我们所知,本文首次提出了一种克服上述困难的解决方案。为此,我们引入了一个辅助变换函数和一个阻抗缩放函数。辅助函数指定了耦合器输入和输出界面处匹配的介电材料,缩放函数抑制反射并使材料对于横向磁(TM)极化而言是非磁性的。结果,设计出了一种光波导耦合器,它能够使用非磁性材料理想地耦合具有任意介电材料和任意横截面的两个波导。通过使用COMSOL Multiphysics对设计方法进行了验证。