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首页> 外文期刊>Optical and quantum electronics >Chiral effects in low-cost plasmonic arrays of elliptic nanoholes
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Chiral effects in low-cost plasmonic arrays of elliptic nanoholes

机译:椭圆纳米孔的低成本等离子体阵列中的手性效应

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In this work we present an approach to induce chiral effects in well-known plasmonic nanohole arrays with triangular unit cell. Arrays with circular nanoholes in metals can exhibit interesting light-matter interaction mechanisms such as surface plasmon polaritons and extraordinary optical transmission. Moving from circular to elliptical shape and tilting the ellipse away from the lattice symmetry lines, a symmetry breaking induces a different absorption of the circularly polarized light of opposite handedness, i.e. circular dichroism. We numerically investigate circular dichroism at normal incidence in elliptic nanoholes in Au in the spectral range 400-1000 nm. We focus on its dependence on the elliptic nanohole tilt, and further proceed with the ellipse radii optimization. The optimized circular dichroism reaches 84%, and we report on the near field absorption distribution at the wavelengths of this maximum value.
机译:在这项工作中,我们提出了一种在具有三角形晶胞的众所周知的等离子体纳米孔阵列中诱导手性效应的方法。金属中具有圆形纳米孔的阵列可以表现出有趣的光-质相互作用机制,例如表面等离激元极化子和非凡的光学传输。从圆形移动到椭圆形,并使椭圆形远离晶格对称线倾斜,对称性破裂会导致不同惯性的圆偏振光吸收不同,即圆二色性。我们数值研究在光谱范围为400-1000 nm的Au椭圆纳米孔中法向入射时的圆二色性。我们专注于其对椭圆形纳米孔倾斜的依赖性,并进一步进行椭圆半径优化。优化的圆二色性达到84%,我们报告了在该最大值的波长处的近场吸收分布。

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