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Double and triple-wavelength plasmonic demultiplexers based on improved circular nanodisk resonators

机译:基于改进的圆形纳米盘谐振器的双波长和三波长等离子多路分解器

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Plasmonic demultiplexers using improved circular nanodisk resonators (CNRs) and metal-insulator-metal waveguides have been designed. The proposed structures use air and silver as insulator and metal layers, respectively. The relative permittivity of silver has been characterized by Drude, Palik, and Drude-Lorentz models in our finite-difference time-domain simulations. To obtain demultiplexers, first two filters based on improved CNRs are designed. One of the most outstanding features of a CNR is that the resonance wavelength can be tuned by changing its radius. It is shown that increasing the CNRs radii for the single-mode bandpass filter increases the resonance wavelength, linearly. Accordingly, double and triple-wavelength demultiplexers (DeMuxes) have been proposed for the wavelength range of 600 to 2000 nm. Due to their small area, the proposed demultiplexers can be applied in integrated optical circuits for optical communication purposes.
机译:已经设计出使用改进的圆形纳米盘谐振器(CNR)和金属-绝缘体-金属波导的等离子体解复用器。所提出的结构分别使用空气和银作为绝缘体和金属层。在我们的有限差分时域模拟中,Drude,Palik和Drude-Lorentz模型已经表征了银的相对介电常数。为了获得多路分解器,设计了基于改进的CNR的前两个滤波器。 CNR的最突出特征之一是可以通过改变其半径来调谐共振波长。结果表明,增加单模带通滤波器的CNR半径会线性增加谐振波长。因此,已经提出了用于600至2000nm的波长范围的双波长和三波长解复用器(DeMuxes)。由于它们的面积小,所提出的多路分解器可以被应用在用于光通信目的的集成光学电路中。

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