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首页> 外文期刊>Journal of nanoscience and nanotechnology >Design Principles for Optoelectronic Applications of Extraordinary Light Transmission Effect in Plasmonics Nanoapertures
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Design Principles for Optoelectronic Applications of Extraordinary Light Transmission Effect in Plasmonics Nanoapertures

机译:等离子纳米孔中非凡的光传输效应的光电应用设计原理

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摘要

The extraordinary light transmission effect (EOT) through sub-wavelength nanoapertures in opaque metal films has lead to observation of a wide variety of exciting new optical phenomena. This remarkable effect is generally related to the interaction of the light with the extended plasmonic resonances on the surface of the metal film and localized surface plasmons in the apertures. On the other hand, there is little conceptual understanding for controlling the localized surface plasmonic behavior of the individual apertures and their coupling to the extended surface plasmons. In this letter, we present an intuitive and straightforward picture of the extra-ordinary light transmission phenomena based on basic antenna principles for plasmonic excitations and coupling of these plasmonic excitations in complex nano-apertures. Our quasi-static model remarkably well explains our experimental measurements in shape anisotropic structures with unique properties controlled by adjusting the size and the geometry of the apertures. Our approach puts forward new design principles for potential applications ranging from subwavelength optoelectronics and data storage to bio/chemical sensing.
机译:通过不透明金属膜中亚波长纳米孔的非凡光传输效果(EOT)导致观察到各种令人兴奋的新光学现象。这种显着效果通常与光与金属膜表面上扩展的等离子体共振和孔中局部表面等离子体激元的相互作用有关。另一方面,对于控制各个孔的局部表面等离激元行为及其与扩展表面等离激元的耦合了解甚少。在这封信中,我们基于等离子激元的基本天线原理以及复杂纳米孔径中这些等离子激元的耦合原理,给出了非凡的光传输现象的直观直观描述。我们的准静态模型很好地说明了我们在形状各向异性结构中的实验测量结果,该结构具有通过调整孔的大小和几何形状来控制的独特属性。我们的方法针对潜在应用提出了新的设计原则,涉及从亚波长光电,数据存储到生物/化学传感的潜在应用。

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