两个介质波导之间夹装MDM等离子体波导的透射率评估

R. Wahsheh
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引用次数: 1

摘要

在同一芯片上集成介质波导和等离子波导是未来纳米等离子电路集成的需要。在没有考虑金属-介电-金属等离子体波导夹在两个传统介电波导之间的影响的情况下,提出了两种不同的耦合方法。本研究采用时域有限差分方法,数值分析了增加夹层MDM等离子体波导长度对提取光进入输出CDW的影响。我们发现,在两个cdw之间嵌入MDM等离子体波导,与没有夹在MDM等离子体波导之间的情况相比,由于FP腔状响应,导致频谱响应宽度减小。我们还研究了改变设计尺寸的各种参数对我们提出的设计的频谱响应的影响。我们的研究结果表明了所提出的设计在超紧凑纳米等离子体电路集成方面的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transmissivity Assessment of a Sandwiched MDM Plasmonic Waveguide between two Dielectric Waveguides
Integrating both dielectric and plasmonic waveguides on the same chip is needed for the future of the integration of nanoplasmonic circuits. Different coupling methods have been proposed between those two types of waveguides without taking into consideration the effect of sandwiching the metal-dielectric-metal (MDM) plasmonic waveguide between the two conventional dielectric waveguides (CDWs). In this research work, using the finite-difference-time-domain method, we numerically analyze the effect of increasing the length of the sandwiched MDM plasmonic waveguide on the extracted light into the output CDW. We found that embedding the MDM plasmonic waveguide between two CDWs causes a reduction in the width of the spectrum response due to the FP cavity-like response compared to that without sandwiching the MDM plasmonic waveguide. We also investigated the effect of changing various parameters of the design dimensions on the spectrum response of our proposed design. Our results indicate potential applications of the proposed design in the integration of ultra-compact nanoplasmonic circuits.
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