Angle-Resolved Optical Characterization of a Plasmonic Triangular Array of Elliptical Holes in a Gold Layer

Optics Pub Date : 2024-03-21 DOI:10.3390/opt5010014
M. Angelini, K. Jefimovs, P. Pellacani, Dimitrios Kazazis, Franco Marabelli, F. Floris
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Abstract

Plasmonic arrays are grating-like structures able to couple an incoming electromagnetic field into either localized or propagating surface plasmonic modes. A triangular array of elliptical holes in a gold layer were realized resorting to displacement Talbot lithography. Scanning electron microscopy was used to evaluate the geometrical features and finite time domain simulations were performed to verify the consistency of the design. The optical response was characterized by angle-resolved reflectance and transmittance measurements. The results demonstrate the good quality and uniformity of the array. Furthermore, the study on the dependence of the optical response on both the hexagonal lattice and the elliptical hole-defined symmetry properties was conducted allowing the distinction of their effects on both the localized and propagating plasmonic modes. The results indicate that the localized component of the plasmonic modes is mainly affected by the elliptical shape, while the propagating part is influenced by the hexagonal lattice symmetry.
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金层中椭圆孔等离子三角阵列的角度分辨光学特性分析
等离子体阵列是一种类似光栅的结构,能够将进入的电磁场耦合到局部或传播的表面等离子体模式中。利用位移塔尔博特光刻技术,在金层中实现了椭圆孔三角形阵列。扫描电子显微镜用于评估几何特征,有限时域模拟用于验证设计的一致性。通过角度分辨反射率和透射率测量,对光学响应进行了表征。结果表明该阵列具有良好的质量和均匀性。此外,还研究了光学响应对六边形晶格和椭圆孔对称性的依赖性,从而区分了它们对局部和传播质子模式的影响。结果表明,等离子模式的局部成分主要受椭圆形的影响,而传播部分则受六边形晶格对称性的影响。
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