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Negative Refractive Index Metasurfaces for Enhanced Biosensing

机译:负折射率超颖表面可增强生物传感

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In this paper we review some metasurfaces with negative values of effective refractive index, as scaffolds for a new generation of surface plasmon polariton-based biological or chemical sensors. The electromagnetic properties of a metasurface may be tuned by its full immersion into analyte, or by the adsorption of a thin layer on it, both of which change its properties as a plasmonic guide. We consider various simple forms of plasmonic crystals suitable for this purpose. We start with the basic case of a freestanding, electromagnetically symmetrical plasmonic slab and analyze different ultrathin, multilayer structures, to finally consider some two-dimensional “wallpaper” geometries like split ring resonator arrays and fishnet structures. A part of the text is dedicated to the possibility of multifunctionalization where a metasurface structure is simultaneously utilized both for sensing and for selectivity enhancement. Finally we give an overview of surface-bound intrinsic electromagnetic noise phenomena that limits the ultimate performance of a metasurfaces sensor.
机译:在本文中,我们回顾了一些具有有效折射率负值的超颖表面,将其作为新一代基于表面等离激元极化的生物或化学传感器的支架。可以通过将超表面完全浸入分析物中或通过在其上吸附薄层来调整超表面的电磁特性,这两者都会改变其作为等离激元波导的特性。我们认为适合此目的的各种简单形式的等离子体晶体。我们从一个独立的,电磁对称的等离子平板的基本情况开始,分析不同的超薄多层结构,最后考虑一些二维“墙纸”几何形状,例如裂环谐振器阵列和鱼网结构。本文的一部分致力于多功能化的可能性,其中同时将超表面结构用于传感和选择性增强。最后,我们概述了表面结合的固有电磁噪声现象,该现象限制了超表面传感器的最终性能。

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