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Design of Planar Waveguides With Prescribed Mode-Profile Using Inverse Scattering Theory

机译:逆散射理论设计具有规定模式轮廓的平面波导

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摘要

We demonstrate a new method based on inverse scattering theory for designing the refractive index profile of single-mode planar waveguides in order to obtain a desired TE-mode profile. The method enables a direct design of the waveguide profile without the need for iterative optimization algorithms. The design is based on a first order solution to the Gel''fand–Levitan–MarČenko integral equation that gives a simple linear connection between a small change in the scattering data and the corresponding change in the kernel function. This connection reduces the design problem to a simple linear constrained minimization problem which has an explicit solution. Our design method allows adding additional constraints on the refractive index profile such as the waveguide width. The method presented in this paper can be expanded to analyze TM modes and for designing multi-mode planar waveguides.
机译:我们展示了一种基于逆散射理论的新方法,用于设计单模平面波导的折射率分布,以获得所需的TE模式分布。该方法使得能够直接设计波导轮廓,而无需迭代优化算法。该设计基于Gel''fand–Levitan–MarČenko积分方程的一阶解,该方程在散射数据的微小变化与内核函数的相应变化之间给出了简单的线性关系。这种连接将设计问题简化为一个简单的线性约束最小化问题,该问题具有明确的解决方案。我们的设计方法允许在折射率分布上增加其他约束,例如波导宽度。本文提出的方法可以扩展到分析TM模式和设计多模式平面波导。

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