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Design and Analysis of a Novel Air Gap-Based Semi-elliptical Nanoplasmonic Coupler

机译:一种新型气隙半椭圆纳米升性耦合器的设计与分析

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摘要

Efficient coupling of light between the dielectric waveguide and plasmonic waveguide has been investigated theoretically in three dimensions. An air gap-based novel nanoplasmonic semi-elliptical structure of silicon (Si) is used as a coupler, which connects these waveguides. Finite integration technique (FIT) has been deployed for the investigation. Theoretical coupling efficiency of similar to 85% at optical communication wavelength (1.55 mu m) has been achieved through numerical simulations. The dependency of coupling efficiency has been investigated by varying the curvature of the semi-elliptical coupler, the air gap width between the two waveguides and the width of the air gap of silver-air-silver waveguide, and an optimal dimension of the proposed structure has been determined. A number of performance parameters like coupling efficiency, reflection coefficient, return loss, and voltage standing wave ratio (VSWR) have been analyzed with the obtained optimal dimensions. Broad range of operating frequency, tolerance to coupler thickness, angular, and air gap misalignment, and excellent agreement to a demonstrated experimental coupler has made the proposed coupler distinctive.
机译:从理论上已经三维研究了电介质波导和等离子体波导之间的光的有效耦合。硅(Si)的气隙基础的新型纳米椭圆形结构用作连接这些波导的耦合器。已部署有限集成技术(FIT)进行调查。通过数值模拟已经实现了在光通信波长(1.55μm)处类似于85%的理论耦合效率。通过改变半椭圆形耦合器的曲率,两个波导之间的气隙宽度和银 - 空气 - 银波导的气隙的宽度,以及所提出的结构的最佳尺寸来研究耦合效率的依赖性,以及所提出的结构的最佳尺寸已经确定了。已经通过所获得的最佳尺寸分析了许多类似耦合效率,反射系数,返回损耗和电压驻波比(VSWR)的性能参数。广泛的工作频率,耦合器厚度,角度和空气隙未对准的公差,以及对显示的实验耦合器的优异一致性使得提出的耦合器具有独特性。

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