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Depolying Tunable Metal-Shell/Dielectric Core Nanorod Arrays as the Virtually Perfect Absorber in the Near-Infrared Regime

机译:将可调谐金属壳/介电核纳米棒阵列解聚为近红外条件下的几乎完美的吸收剂

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In this paper, the coupled Ag-shell/dielectric-core nanorod for sensor application is investigated and the different dielectric core plasmonic metamaterial is adopted in our design. The operational principle is based on the concept of combining the lattice resonance, localized surface plasmon resonance (SPR), and cavity plasmon resonance modes within the nanostructure. The underlying mechanisms are investigated numerically by using the three-dimensional finite element method and the numerical results of coupled solid Ag nanorods are included for comparison. The characteristic absorptance/reflectance peaks/dips have been demonstrated to be induced by different plasmonic modes that could lead to different responses required for plasmonic sensors. A nearly perfect absorptance and an approximate zero reflectance with a sharp band linewidth are obtained from the proposed system, when operated as an SPR sensor with the sensitivity and figure of merit of 757.58 nm/RIU (RIU is the refractive index unit) and 50.51 (RIU–1), respectively. Our work provides a promising method for the future developments of more advanced metamaterial absorber for chemical sensing, thermal radiation tailoring, field enhanced spectroscopy, and general filtering applications.
机译:本文研究了耦合的Ag-壳/电介质纳米棒在传感器中的应用,并在设计中采用了不同的电介质核等离子体超材料。操作原理基于在纳米结构内结合晶格共振,局部表面等离子体激元共振(SPR)和腔等离子体激元共振模式的概念。使用三维有限元方法对潜在的机理进行了数值研究,并包括了耦合的固体Ag纳米棒的数值结果以进行比较。已经证明特征吸收率/反射率峰值/倾角是由不同的等离激元模式引起的,这可能导致等离激元传感器需要不同的响应。当作为SPR传感器以757.58 nm / RIU(RIU是折射率单位)和50.51( RIU-1)。我们的工作为更先进的超材料吸收体的未来发展提供了一种有前途的方法,该吸收体用于化学传感,热辐射裁剪,现场增强光谱学和常规过滤应用。

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