基于MIM耦合片式谐振器的高选择性单模等离子体滤波器

Imam Abderrahmane, Badaoui Hadjira, Abri Mehadji, Hocine Bensalah, Rahmi Bachir
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引用次数: 0

摘要

提出了一种新型的等离子体滤波器,该滤波器采用MIM波导耦合高功率滤波器和片式谐振器。通过研究场廓图,将输出波导设置在腔侧,并在腔前实现高功率滤波器,在500 ~ 1500 nm波长范围内建立了单模滤波器,透射率为62%,FWHM=7 nm, q因子=95.14,插入损耗为2.076 dB。采用基于有限元法的COMSOL Multiphysics软件进行了数值研究。该结构以空气和银分别作为介质和金属,银采用德鲁德模型表征。该滤波器具有高透射率、高选择性和超低空间尺寸的特点,具有较好的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High selective single mode plasmonic filters based on MIM coupled with pill resonator
A novel plasmonic filter has been proposed using MIM waveguide coupled with a HPF and a pill resonator. Basic structure through the study field profile and setting the output waveguide on the side of the cavity and implementing a HPF before the cavity, we were able to establish a single mode filter in the 500 nm to 1500 nm wavelength range with a transmission of 62% and FWHM=7 nm and Q-factor =95.14 and insertion loss of 2.076 dB. COMSOL Multiphysics software based on the FEM method has been used for the numerical investigation. The structure uses air and silver as dielectric and metal, respectively, and the silver is characterized by the Drude model. Taking into account the high transmission and selectivity with an ultra low spatial size, the proposed filter has a good potential to be used in more complex structures.
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