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Optical properties of metamaterial split ring nematic colloids

机译:超材料裂环向列胶体的光学性质

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摘要

The fabrication of 3D bulk metamaterials, optical materials with sub-wavelength building blocks, is an open challenge, along with the tuning of their optical properties, such as transmissivity or exit polarization where a possible approach is to embed liquid crystalline materials into metamaterials and use their tunable birefringence. In this work, we explore using numerical modelling the photonic properties of a composite of split ring resonator colloidal particles, dispersed in nematic liquid crystal, which was optimised to enable self-assembly fully. Specifically, using generalised FDTD simulations for light propagation in birefringent profiles, we demonstrate the photonic response of single particles, 2D and 3D colloidal crystals. The material transmittance is shown to exhibit clear resonant behaviour with the resonances tunable with the birefringence in the order of ~5%. Electric and magnetic field modes emergent on the particles are shown, as affected by the surrounding nematic birefringence, both the in the slit region of the split ring resonator (SRR) particles as well as around the particles. Observed photonic response is further explained by introducing basic equivalent LC circuits. Finally, this work is aimed at developing soft and fluid metamaterials, which exhibit optical anisotropy in the photonic response as a potent mechanism for controlling the flow of light at wavelength and even sub-wavelength scales.
机译:3D块超材料(具有亚波长构建块的光学材料)的制造以及其光学特性(例如透射率或出射偏振)的调整是一个开放的挑战,在这种情况下,可能的方法是将液晶材料嵌入到超材料中并使用他们的可调双折射。在这项工作中,我们使用数值模型探索了分散在向列液晶中的裂环谐振器胶体颗粒复合材料的光子特性,该复合材料经过优化可以完全自组装。具体来说,使用广义FDTD模拟在双折射剖面中进行光传播,我们证明了单颗粒,2D和3D胶体晶体的光子响应。示出了材料透射率表现出清晰的共振行为,其中双折射可调谐至约5%的共振。示出了在粒子上出现的电场和磁场模式,受开环谐振器(SRR)粒子的狭缝区域以及粒子周围的周围向列双折射的影响。通过引入基本的等效LC电路进一步解释了观察到的光子响应。最后,这项工作的目的是开发软的和流体的超材料,它们在光子响应中表现出光学各向异性,作为控制波长甚至亚波长尺度光流的有效机制。

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