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首页> 外文期刊>Photonics >Periodic Arrays of Film-Coupled Cubic Nanoantennas as Tunable Plasmonic Metasurfaces
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Periodic Arrays of Film-Coupled Cubic Nanoantennas as Tunable Plasmonic Metasurfaces

机译:薄膜耦合立方纳米天线作为可调谐等离振子超表面的周期阵列。

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We show theoretically that a two-dimensional periodic array of metallic nanocubes in close proximity to a metallic film acts as a metasurface with tunable absorbance. The presence of a metallic film underneath the array of plasmonic nanocubes leads to an impedance matched plasmonic metasurface enhancing up to 4 times the absorbance of incident radiation, in the spectral region below 500 nm. The absorbance spectrum is weakly dependent on the angle of incidence and state of polarization of incident light a functionality which can find application in thermo-photovoltaics. Our calculations are based on a hybrid layer-multiple-scattering (hLMS) method based on a discrete-dipole approximation (DDA)/T-matrix point matching method.
机译:我们从理论上表明,金属纳米立方体的二维周期阵列非常接近金属膜,充当具有可调吸收率的超颖表面。在等离子纳米立方体阵列下方的金属膜的存在会导致阻抗匹配的等离子超颖表面在500 nm以下的光谱区域中增强多达4倍的入射辐射吸收率。吸收光谱几乎不依赖于入射角和入射光的偏振状态,这是一种可以在热光伏中应用的功能。我们的计算基于混合层多重散射(hLMS)方法,该方法基于离散偶极近似(DDA)/ T矩阵点匹配方法。

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