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Port Analysis using S-matrix for 2D Metasurface Waveguide Coupler in Mid-IR Application

机译:在中红外应用中使用S矩阵进行二维超表面波导耦合器的端口分析

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We present an intuitive method of port analysis based on an S-matrix formalism for the design of a 2D metasurface coupler integrated with strip waveguide in SOI for 3.8 μm wavelength. The metasurface design has been achieved using Lumerical by systematically optimizing the radius of circularly shaped unit cells and the period between them. The effective coupling efficiency achieved for the designed 2D metasurface integrated with waveguide is ~98% in the in-plane waveguide for the out-of-plane surface illumination. The achieved bandwidth of the structure is 1 μm. The S-parametcrs of the optimized design are calculated and the 3-port analysis of the device is carried out using Interconnect by Lumerical. The suggested method is general and can be applied to any multi-port devices with some simple changes made in the layout of the design. Gain is the performance metric in our case and it is defined as the ratio of power transmitted at the output port to that of power in the input port. The gain of all the three ports are calculated. We believe our design is a good alternative for conventionally employed grating couplers and inverse tapers.
机译:我们提出了一种基于S-矩阵形式主义的端口分析的直观方法,用于设计与SOI中的带状波导集成的2D元表面耦合器,以3.8μm波长。通过通过系统地优化圆形单元电池的半径和它们之间的时段来实现元质面设计。对于平面内波导,在与波导集成的设计2D元表面实现的有效耦合效率在平面内波导中为98%。结构的带宽为1μm。计算优化设计的S-PARAPETCRS,并使用朗文互连进行设备的3端口分析。建议的方法是通用的,并且可以应用于任何多端口设备,其中包含设计布局的一些简单变化。增益是我们的情况下的性能度量,并且它被定义为在输出端口发送到输入端口中电力的功率比率。计算所有三个端口的增益。我们相信我们的设计是常规使用的光栅耦合器和逆锥形的替代方案。

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