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Deep-Subwavelength Semiconductor Nanowire Surface Plasmon Polariton Couplers

机译:深亚波长半导体纳米线表面等离子体激元耦合器

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The increased importance of plasmonic devices has prompted a sizable research activity directed toward the development of ultracompact and high-performance couplers. Here, we present a novel scheme for efficient, highly localized, and directional sourcing of surface plasmon polaritons (SPPs) that relies on the excitation of leaky mode optical resonances supported by high-refractive index, semiconductor nanowires. High coupling efficiencies are demonstrated via finite difference frequency domain simulations and experimentally by leakage radiation microscopy. This efficiency is quantified by means of a coupling cross section, the magnitude of which can exceed twice the geometric cross section of the nanowire by exploiting its leaky resonant modes. We provide intuition into why the SPP coupling via certain wire modes is more effective than others based on their symmetry properties. Furthermore, we provide an example showing that dielectric scatterers may perform as well as metallic scatterers in coupling to SPPs.
机译:等离子体设备的重要性日益提高,已经引起了针对超紧凑和高性能耦合器开发的大量研究活动。在这里,我们提出了一种高效,高度局部化和定向的表面等离激元极化子(SPPs)的新颖方案,该方案依赖于由高折射率半导体纳米线支持的漏模光学共振的激发。高耦合效率通过有限差分频域模拟和泄漏辐射显微镜实验证明。该效率通过耦合截面来量化,通过利用其泄漏共振模式,耦合截面的大小可以超过纳米线几何截面的两倍。我们凭直觉基于它们的对称特性,说明为什么通过某些导线模式进行的SPP耦合比其他方式更有效。此外,我们提供了一个示例,显示与SPP耦合时,介电散射体的性能与金属散射体相同。

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