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Experimental comparison between conventional and hybrid long-range surface plasmon waveguide bends

机译:常规和杂交远程表面等离子体波导弯曲的实验比较

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We report on the characterization of long-range surface plasmon waveguide bends at telecom wavelengths (lambda=1550 nm). The structures consist of a thin Au stripe embedded in a transparent polymer film. When the polymer thickness is larger than the lateral extension of the plasmon, the stripe sustains a conventional long-range mode; in the opposite case, the mode is hybrid because its field distribution is confined by total internal reflection in the dielectric cladding. This hybridization increases the damping by absorption but dramatically reduces the radiation loss that occurs for curved geometries, such as bends. Our results are supported quantitatively by full-wave finite-element simulations.
机译:我们报告了电信波长(Lambda = 1550nm)的远程表面等离子体波导弯曲的表征。 该结构由嵌入透明聚合物膜中的薄Au条纹组成。 当聚合物厚度大于等离子体的横向延伸时,条带维持了传统的远程模式; 在相反的情况下,模式是混合的,因为其场分布被介电包层中的全内反射限制。 该杂交增加了吸收阻尼,但显着降低了弯曲几何形状的辐射损失,例如弯曲。 我们的结果由全波有限元模拟定量支持。

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