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Plasmonic subwavelength waveguides: next to zero losses at sharp bends

机译:等离子体亚波长波导:在急剧弯曲时接近零损耗

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摘要

We demonstrate that ≈100% transmission of a strongly localized channel plasmon polariton can be achieved through a sharp 90° bend in a subwavelength waveguide in the form of a triangular groove on a metal surface—a feature that has previously been demonstrated only for photonic crystal waveguides, which do not provide subwavelength localization. Conditions for minimum reflection and radiative losses at the bend are investigated numerically by the finite-difference time-domain algorithm. Dissipation in the structure is demonstrated to be sufficiently low to ensure significant propagation distances (a number of wavelengths) of the localized plasmon in each of the arms of the bend.
机译:我们证明,通过在金属表面上以三角形凹槽的形式在亚波长波导中进行90°的急剧弯曲,可以实现≈100%的强局部通道等离子体激元的透射率-以前仅对光子晶体进行了演示。不提供亚波长定位的波导。通过有限差分时域算法,对弯曲处的最小反射和辐射损耗的条件进行了数值研究。事实证明,结构中的耗散足够低,可以确保局部等离激元在弯头每个臂中的有效传播距离(多个波长)。

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