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Systematic Theoretical Analysis of Selective-Mode Plasmonic Filter Based on Aperture-Side-Coupled Slot Cavity

机译:基于孔侧耦合槽腔的选择性模式等离子滤波器的系统理论分析

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摘要

By taking the aperture as a resonator, we propose an analytical model to describe the dynamic transmission in metal-dielectric-metal (MDM) waveguide aperture-sidecoupled with slot cavity. The theoretical results and the finite-difference time-domain (FDTD) simulations agree well with each other, and both demonstrate the mode selectivity and filtering tunability of the plasmonic structure. By adjusting the phase shifts in slot cavity or resonance frequency determined by the aperture, one can realize the required transmission spectra and slow light effect. The theoretical analysis may open up avenues for the control of light in highly integrated optical circuits.
机译:通过将孔作为谐振器,我们提出了一个解析模型来描述与缝隙腔耦合的金属-电介质-金属(MDM)波导孔侧的动态传输。理论结果和时域有限差分(FDTD)模拟相互吻合,并且都证明了等离子体结构的模式选择性和滤波可调性。通过调节缝隙腔中的相移或由孔径确定的共振频率,可以实现所需的透射光谱和慢光效果。理论分析可以为高度集成的光学电路中的光控制开辟途径。

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