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Theoretical Investigation of a GaAs Based Novel Air Slot Nano-Plasmonic Coupler

机译:基于GaAs的新型气隙纳米激光耦合器的理论研究

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A novel rectangular nano-plasmonic coupler based on Gallium Arsenide (GaAs) has been suggested that has an air slot inserted into the dielectric waveguide, considering air as the dielectric material of the metal-dielectric-metal (MDM) plasmonic waveguide. The finite integral technique (FIT) based simulation software yielded a coupling efficiency of 81.07% at the wavelength of optical communication i.e. 1.55µm. The most efficient coupling structure has been attained by analyzing the performance with a variety of different dimensions which subsequently results in decent performance over a wide range of wavelengths above the visible spectrum. The elementary flat rectangular composition of the suggested coupler without any tapered edges provides convenience in the manufacturing process, making the coupler affordable and peerless.
机译:已经提出了一种新颖的基于砷化镓(GaAs)的矩形纳米等离子体耦合器,该耦合器考虑到空气是金属-电介质-金属(MDM)等离子体波导的介电材料,在空气波导中插入了一个气隙。基于有限积分技术(FIT)的仿真软件在光通信波长即1.55µm处产生了81.07%的耦合效率。通过分析具有各种不同尺寸的性能已经获得了最有效的耦合结构,这随后导致了在可见光谱以上的宽波长范围内的良好性能。建议的耦合器的基本扁平矩形结构没有任何锥形边缘,为制造过程提供了便利,使耦合器价格适中且无与伦比。

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