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首页> 外文期刊>JEOS:RP >Exploring the impact of rotating rectangular plasmonic nano-hole arrays on the transmission spectra and its application as a plasmonic sensor
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Exploring the impact of rotating rectangular plasmonic nano-hole arrays on the transmission spectra and its application as a plasmonic sensor

机译:探索旋转矩形等离子纳米孔阵列对透射光谱的影响及其在等离子传感器中的应用

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摘要

Plasmonic nano-structures play a significant role in most recent photonic devices and applications. In this paper, we investigate the optical transmission spectra of rotatable periodic nano-metric apertures with different dimensions. This investigation includes monitoring the modification of both the transmission resonance wavelengths and peak transmittance at different dimensions and orientations of the nano-holes. The obtained results provide better insight to the interaction of light with periodic plasmonic nano-hole arrays. We find that nano-holes dimension/orientation can totally suppress an optical transmission, tune its resonance wavelengths, and change its peak values. Furthermore, we present the surface plasmonic resonance sensing as an application for the reported nano-hole array.
机译:等离子纳米结构在最新的光子器件和应用中起着重要作用。在本文中,我们研究了具有不同尺寸的可旋转周期纳米孔径的光学透射谱。该研究包括在纳米孔的不同尺寸和方向上监测透射共振波长和峰值透射率的变化。获得的结果为光与周期性等离激元纳米孔阵列的相互作用提供了更好的见识。我们发现,纳米孔的尺寸/方向可以完全抑制光传输,调节其共振波长,并改变其峰值。此外,我们提出了表面等离子体共振感应作为已报道的纳米孔阵列的应用。

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