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Electromagnetic Modeling of Multiwalled Carbon Nanotubes as Nanorod Electrodes for Optimizing Device Geometry in a Nanophotonic Device

机译:多壁碳纳米管作为纳米棒电极的电磁建模,用于优化纳米光子器件中的器件几何形状

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We present electric-field modeling of carbon nanotubes (CNTs) as nanorods to optimize electrode geometry in a light-modulating nanophotonic device based on CNTs and liquid crystals. The electric fields spawned by the nanotube electrodes are used to align the liquid crystal molecules to generate a gradient refractive-index profile. We considered an array of CNTs on a 2-D conducting substrate. Different geometries were realized by choosing one, two, three, and four CNTs at each point. The static electric fields produced by these different geometries were simulated. Our results show that the “four nanotube” groups generated a wide and symmetrical electric field as compared to other geometries. We have verified the simulation results by experimentally fabricating the nanophotonic device and found that the “four nanotube” groups formed a negative lens array in the liquid crystal cell with enhanced performance.
机译:我们目前作为纳米棒的碳纳米管(CNTs)的电场建模,以优化基于CNTs和液晶的光调制纳米光子器件中的电极几何形状。由纳米管电极产生的电场用于使液晶分子对准以产生梯度折射率分布。我们考虑了二维导电基板上的CNT阵列。通过在每个点选择一个,两个,三个和四个CNT,可以实现不同的几何形状。模拟了由这些不同几何形状产生的静电场。我们的结果表明,与其他几何形状相比,“四个纳米管”基团产生了一个宽而对称的电场。我们已经通过实验制造纳米光子器件验证了仿真结果,发现“四个纳米管”基团在液晶盒中形成了具有增强性能的负透镜阵列。

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