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Design and simulation of dielectric-loaded surface plasmon waveguides with applications in the visible range

机译:介电负载表面等离子体激元波导的设计与仿真及其在可见光范围的应用

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This work presents a numerical analysis using the finite difference time domain (FDTD) method of the optical properties (modal characteristics, dispersion, propagation length, and optical confinement) exhibited by a particular class of plasmonic waveguides named dielectric loaded surface plasmon (DLSP) devices. The DLSP systems investigated here consist in ridge like waveguides realized from PMMA with typical cross section areas of 100x100 nm configured on the top of a silver substrate. The FDTD simulations show that in the visible range an optimal compromise between a high degree of optical confinement and an adequate propagation length of around 10 um can be achieved. This indicates that in this spectral range the proposed DLSP waveguides could possesses applications in various sensing and optical signal processing devices.
机译:这项工作提出了使用有限差分时域(FDTD)方法对特定种类的名为介电负载表面等离激元(DLSP)装置的等离激元波导展现出的光学特性(模态特性,色散,传播长度和光学约束)进行数值分析的方法。本文研究的DLSP系统包括由PMMA制成的脊状波导,其典型横截面积为100x100 nm,配置在银基板的顶部。 FDTD仿真表明,在可见光范围内,可以在高度光学限制和大约10 um的适当传播长度之间实现最佳折衷。这表明,在该光谱范围内,提出的DLSP波导可以在各种传感和光信号处理设备中得到应用。

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