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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Controlling the interference between localized and delocalized surface plasmons via incident polarization for optical switching
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Controlling the interference between localized and delocalized surface plasmons via incident polarization for optical switching

机译:通过入射极化对光学切换的极化控制局部和分层表面等离子体之间的干扰

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摘要

Surface plasmons supported by various metallic nanostructures have given rise to several significant breakthroughs in the field of integrated photonic devices due to its ability to effectively confine and enhance optical field in subwavelength volume. In particular, the demand to actively control optical responses of plasmonic systems becomes urgent for the miniaturization of signal processing devices, surface-enhanced Raman scattering (SERS) substrates and biochemical sensors. In this paper, we systematically investigate the plasmon modes as well as their interaction in a layered nanostructure composed of a periodically-arranged radiative nanoring and a metallic ground plane, as well as a thin insulating spacer. A tunable transparent peak on the background of the broadband plasmon resonance emerges in the reflection spectrum as changing the periodicity of nanoparticle array, a plasmonic analogue of electromagnetically induced transparency (EIT). Owing to the structural symmetry of the rings, we demonstrate a new scheme of controlling the interference between localized and delocalized plasmons by means of incident polarization and believe that the proposed metasurface may find applications in optical switching if the polarization-controlled components are introduced.
机译:各种金属纳米结构支持表面等离子体已经引起了在集成光子器件领域的几个显著的突破,由于它能够有效地限制和增强光学领域的亚波长量。特别地,主动地控制等离子体激元系统的光学响应的​​需求成为的信号处理装置中,表面增强拉曼散射(SERS)基材和生物化学传感器的小型化迫切。在本文中,我们系统地研究的等离子模式以及它们在周期性排列的辐射纳米环和金属接地平面,以及一个薄的绝缘衬垫组成的层状纳米结构的相互作用。在宽带等离子体共振的背景的可调谐透明峰中的反射光谱变化的作为纳米粒子排列,电磁感应透明(EIT)的电浆类似物的周期性出现。由于环的结构匀称,我们通过事件极化方式展示控制本地化和非定域等离子体之间的干扰的新方案,并相信建议超颖可能会发现在光交换应用中,如果引入偏振控制组件。

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