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Strong circular dichroism in a non-chiral metasurface based on an array of metallic V-shaped nanostructures

机译:基于金属V形纳米结构阵列的非手性元表面强的强圆形二中间

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摘要

In this paper, an extrinsic chiral metasurface based on a silver thin film containing a periodic array of V-shaped nanostructures is proposed. The proposed structure is normally and obliquely illuminated by right- and left-handed circularly polarized plane waves and the transmission through the structure is calculated using the frequency domain finite-integration technique. Our simulation results show that the designed metasurface exhibits strong circular dichroism (CD) in the transmission Delta = T-RCP-T-LCP = 0.98 in the near-infrared region under oblique incidence. To our knowledge, this is one of highest CD effects that have been achieved so far in the single-layer metasurface based on metallic nanostructures. The physical mechanism for this strong CD effect is explained in terms of the current density distribution. Furthermore, the effects of change of the incident angle, the refractive index of surrounding medium and structure parameters, such as film thickness and lattice constants on CD spectrum, are investigated. In addition, the CD phenomenon in the structure is analyzed in other frequency regions.
机译:在本文中,提出了一种基于含有含有多个V形纳米结构阵列的银薄膜的外部手性心脏表面。所提出的结构通常通过右手和左手圆偏振平面波倾斜照射,并且使用频域有限集成技术计算通过结构的传输。我们的仿真结果表明,在斜发射下,设计的Metasurface在近红外区域的透射Δ= T-RCP-T-LCP = 0.98中表现出强烈的圆形二色性(CD)。据我们所知,这是基于金属纳米结构的单层元表面迄今为止已经实现的最高CD效应之一。在电流密度分布方面解释了这种强CD效应的物理机制。此外,研究了入射角变化,周围介质和结构参数的折射率,例如CD谱上的膜厚度和晶格常数的影响。另外,在其他频率区域中分析了结构中的CD现象。

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