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Directional couplers using long-range surface plasmon polariton waveguides

机译:定向耦合器使用远程表面等离子体激元波导

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摘要

We present an experimental study of guiding and routing of electromagnetic radiation along the nanometer-thin and micrometer-wide gold stripes embedded in a polymer via excitation of long-range surface plasmon polaritons (LR-SPPs) in a very broad wavelength range from 1000 to 1650 mn. For straight 14-nm-thick stripes and a wavelength of 1550 urn, LR-SPP propagation loss is determined for the stripe widths varying from 2 to 12 mu m and is found to be similar to 7 and 5 dB/cm for 10- and 4-mu m-wide stripes, respectively. For the directional couplers based on 14-nm-thick and 8-mu m-wide gold stripes and a wavelength of 1570 nm, the coupling lengths of 4.1, 1.9, and 0.8 mm are found for the respective waveguide separations of 8, 4, and 0 mu m. We model the LR-SPP-based directional couplers using the effective-refractive-index method and obtain a good agreement with the experimental results. The transmission spectra of LR-SPP-based directional couplers are presented demonstrating an efficient (similar to 30 dB) separation of different telecom wavelength bands. Various possibilities for dynamic control of wavelength division/multiplexing with LRSPP-based directional couplers that utilize the thermo-optic effect in the polymer cladding are also discussed.
机译:我们目前进行的实验研究是通过在1000至200 nm的非常宽的波长范围内激发远距离表面等离激元极化子(LR-SPPs),沿着嵌入在聚合物中的纳米薄和微米宽的金条引导和路由电磁辐射1650百万。对于直的14 nm厚的条带和1550 um的波长,确定条带宽度从2到12μm不等的LR-SPP传播损耗,发现对于10-和10-nm近似于7和5 dB / cm。分别为4微米/米的条纹。对于基于14nm厚和8μm宽的金条纹,波长为1570 nm的定向耦合器,对于分别为8、4、4和4的波导间隔,发现耦合长度分别为4.1、1.9和0.8 mm。和0微米。我们使用有效折射率方法对基于LR-SPP的定向耦合器进行建模,并与实验结果取得了良好的一致性。给出了基于LR-SPP的定向耦合器的传输光谱,证明了不同电信波段的有效分离(类似于30 dB)。还讨论了利用基于LRSPP的定向耦合器动态控制波分/复用的多种可能性,这些定向耦合器在聚合物覆层中利用了热光效应。

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