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Evidence of Tunable Fano Resonance in a Liquid Crystal-Based Colloidal Metamaterial

机译:液晶胶体超材料中调谐扇形共振的证据

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摘要

A colloidal metamaterial composite, realized by dispersing sub-micrometer-sized high refractive index dielectric resonators (selenium) in a nematic liquid crystal medium, exhibits electrically tunable Mie resonances in the optical regime. Darkfield hyperspectral imaging reveals that when the nematic liquid crystal (NLC) molecules reorient from the pristine planar state on application of an AC electric field, the scattered image from the particle splits into two, owing to the birefringence of the NLC medium. At higher voltages, a doughnut-shaped scattering pattern is obtained, indicating the occurrence of Fano resonance. The analysis of the darkfield scattering spectra based on the "Multi-pole Fano interference model" confirms the presence of Fano resonance arising due to the interference between the broad electric dipolar and narrow electric quadrupolar modes. With increasing voltage, the value of Fano parameter q decreases and approaches unity corresponding to an ideal Fano shape. Thus, the inherent optical anisotropy of the NLC medium and Fano coupling between the Mie resonant modes lead to highly reversible changes in the far-field scattering pattern with potential applications in refractive index sensing, wave-guiding, etc.
机译:通过将亚微米尺寸的高折射率介电谐振器(硒)分散在向列液晶介质中的胶体超材料复合材料,在光学方案中表现出电调谐的MIE共振。 Darkfield Hyperspectral型成像显示,当向向液晶(NLC)分子从原始平面状态开始施加AC电场时,由于NLC培养基的双折射,来自颗粒的散射图像分为两个。在较高的电压下,获得甜甜圈形散射图案,表示扇形谐振的发生。基于“多极Fano干扰模型”的黑暗场散射光谱的分析证实了由于宽电动偶极和窄电动四极模式之间的干扰而产生的扇形谐振的存在。随着电压的增加,Fano参数Q的值减小并接近与理想的Fano形状相对应的单位。因此,MIE谐振模式之间的NLC介质和FANO耦合的固有光学各向异性导致远场散射图案的高度可逆变化,具有折射率感测,波浪引导等的潜在应用。

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