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Characteristics of a dielectric-metal-dielectric plasmonic waveguide

机译:电介质-金属电介质等离子体波导管的特性

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摘要

We report the results concerning the theoretical optimization of a surface plasmon-polariton-based waveguide at the optical communication wavelength of 1.55 mu m. In particular, the effect of metal thickness and grating depth on the excitation of long- and short-range surface plasmon-polaritons in a dielectric/metal/dielectric structure are considered. It is shown that the coupling between these modes increases as the metal thickness decreases with the tendency of modes to overlap when the grating depth and metal thickness are reduced to values of, respectively, 50 and 25 nm. Also, the attenuation and confinement in these waveguide structures are inspected theoretically as the thicknesses of the three most used metals (Ag, Au and Al) are varied. The results confirm the established requirement of a trade-off between high confinement and low loss. (C) 2008 Elsevier B.V. All rights reserved.
机译:我们报告有关在光通信波长为1.55微米的表面等离激元极化波导的理论优化的结果。特别地,考虑了金属厚度和光栅深度对电介质/金属/电介质结构中的长程和短程表面等离子体激元-极化子的激发的影响。结果表明,当光栅深度和金属厚度分别减小到50和25 nm时,这些模式之间的耦合随着金属厚度的减小而增加,并具有模式重叠的趋势。另外,随着三种最常用的金属(Ag,Au和Al)的厚度变化,理论上还检查了这些波导结构中的衰减和限制。结果证实了在高限制和低损失之间进行折衷的既定要求。 (C)2008 Elsevier B.V.保留所有权利。

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