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Optical transmission characteristics in the MDM waveguide coupled with N-rectangular resonators

机译:MDM波导中的光传输特性耦合与N矩形谐振器

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摘要

A metal-dielectric-metal (MDM) waveguide coupled with N-rectangular cavities is proposed and its spectral features are derived and described based on the coupled-mode and multi-oscillator theory for the first time. The results of theoretical calculation and numerical simulation indicate that resonant modes are proportionally increased with the number of cavities, surprisingly, the wavelength at 716 nm is an F-P resonant mode for n = 1 and those new modes occur on both sides of 716 nm, thus a plasmonic tunable multi-modes filter and slow light effect are achieved. According to the field distributions, the resonant modes can be divided into several types: dipole, quadrupole, hexapole, eighth-pole modes and so on. Moreover, we find that the resonant transmissions are sensitively dependent on the widths and lengths of cavities as well as the vertical and horizontal distances between two cavities. In addition, the phenomena including magnitude modification, redshift, blueshift, and the disappearance and fusion of modes are clearly observed. Compared with those conventional MDM waveguides side-coupled with single or double cavities, our proposed device can provide more channels to manipulate the resonance wavelengths flexibly. Therefore, it may be applied in optoelectronic devices.
机译:提出了一种与N矩形腔耦合的金属介质 - 金属(MDM)波导,并且基于耦合模式和多振荡器理论首次推导和描述其光谱特征。理论计算的结果和数值模拟表明谐振模式随着空腔的数量比例地增加,令人惊讶的是,716nm处的波长是N = 1的FP谐振模式,并且在716nm的两侧发生这些新模式,因此实现等离子体可调多模式滤波器和慢光效果。根据现场分布,谐振模式可分为几种类型:偶极子,四极,六峰,八极模式等。此外,我们发现谐振透射性敏感地取决于腔的宽度和长度以及两个腔之间的垂直和水平距离。此外,清楚地观察到包括幅度修改,红移,蓝光的现象和模式的消失和融合。与那些与单个或双腔侧耦合的传统MDM波导相比,我们所提出的装置可以提供更多通道来灵活操纵谐振波长。因此,它可以应用于光电器件。

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