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Efficient analysis method of light scattering by a grating of plasmonic nanorods

机译:等离子体纳米棒光栅的光散射高效分析方法

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PurposeThe purpose of this paper is to develop a rigorous self-contained formulation for analyzing electromagnetic scattering by grating of plasmonic nanorods. The authors investigate this structure from the viewpoint of the practical application as a refractive index plasmonic sensor. The presented rigorous formulation is accompanied with a neat implementation providing a high computation efficiency and could be considered as an important tool for designing and optimizing compact sensors.Design/methodology/approachScattering of an incident plane wave by grating made of a periodic arrangement of metal-coated dielectric nanocylinders on a dielectric slab is rigorously investigated using the recursive algorithm combined with the lattice sums technique. As a dielectric slab, the authors consider glass material, which is widely used in experiments, whereas silver (Ag) is used as a low loss metal suitable to excite plasmon resonances. The main advantage of the developed self-contained formulation is that first the authors extract the reflection and transmission matrices of a single planar array from a separate analysis of the grating and the slab and then obtain the scattering characteristics of the whole structure by using a recursive formula. The method is computationally fast.FindingsDependence of the surface plasmon resonance wavelength on the refractive index of the surrounding medium is carefully investigated. The resonance peaks are red-shifted with respect to an increasing refractive index of surrounding medium showing an almost linear behavior. Near field distributions are analyzed at the resonance wavelengths of the spectral responses. Special attention is paid to the formation of the dual-absorption bands because of the excitation of the localized surface plasmons. The authors give physical insight to the coupling between grating and the glass slab. The authors found that a strong enhancement of the field inside the slab occurs when the scattered wave of the grating is phase-matched to the guided modes supported by the slab.Originality/valueIn the authors formulation, they do not use any approximation and it is rigorous and accurate. The authors use their original method. The method is based on the lattice sums technique and uses the recursive algorithm to calculate the generalized reflection and transmission characteristics by grating. Such fast and accurate method is an effective tool apt for designing and optimizing tailored sensors, for e.g. advanced biomedical applications.
机译:目的 n本文的目的是开发一种严格的自包含公式,用于分析等离子体纳米棒的光栅引起的电磁散射。作者从作为折射率等离子体传感器的实际应用的角度研究了这种结构。提出的严格公式伴随着提供高计算效率的简洁实现,可以被视为设计和优化紧凑型传感器的重要工具。 n设计/方法/方法 n通过周期性排列的光栅对入射平面波的散射使用递归算法结合晶格求和技术,对电介质平板上的金属涂层电介质纳米圆柱体进行了严格的研究。作为电介质板,作者考虑了在实验中广泛使用的玻璃材料,而银(Ag)被用作适合于激发等离子体激元共振的低损耗金属。开发的自包含公式的主要优点是,首先作者从对光栅和平板的单独分析中提取了单个平面阵列的反射和透射矩阵,然后通过使用递归获得了整个结构的散射特性。式。该方法计算速度很快。 n发现 n仔细研究了表面等离子体共振波长对周围介质折射率的依赖性。共振峰相对于周围介质的折射率增加而红移,从而显示出几乎线性的行为。在光谱响应的共振波长处分析近场分布。由于局部表面等离子体激元的激发,特别注意双吸收带的形成。作者对光栅和玻璃平板之间的耦合给出了物理见解。作者发现,当光栅的散射波与平板所支持的导模相位匹配时,平板内部的场强增强。 n原始值/ n在作者的公式中,他们不使用任何近似值严格而准确。作者使用其原始方法。该方法基于晶格求和技术,并使用递归算法来计算光栅的广义反射和透射特性。这种快速而准确的方法是一种易于设计和优化定制传感器的有效工具,例如。先进的生物医学应用。

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