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Tunable nanostructured composite with built-in metallic wire-grid electrode

机译:具有内置金属线栅电极的可调谐纳米结构复合材料

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In this paper, the authors report an experimental demonstration of microwave reflection tuning in carbon nanostructure-based composites by means of an external voltage supplied to the material. DC bias voltages are imparted through a metal wire-grid. The magnitude of the reflection coefficient is measured upon oblique plane-wave incidence. Increasing the bias from 13 to 700 V results in a lowering of ~20 dB, and a “blueshift” of ~600 MHz of the material absorption resonance. Observed phenomena are ascribed to a change of the dielectric response of the carbon material. Inherently, the physical role of tunneling between nanofillers (carbon nanotubes) is discussed. Achievements aim at the realization of a tunable absorber. There are similar studies in literature that focus on tunable metamaterials operating at either optical or THz wavelengths.
机译:在本文中,作者报告了通过提供给材料的外部电压对碳纳米结构基复合材料进行微波反射调谐的实验演示。直流偏置电压通过金属线栅施加。反射系数的大小在斜波入射时测量。将偏压从13 V增加到700 V会导致〜20 dB的降低,以及材料吸收共振的〜600 MHz的“蓝移”。观察到的现象归因于碳材料的介电响应的变化。本质上,讨论了纳米填料(碳纳米管)之间隧穿的物理作用。成就旨在实现可调谐吸收器。文献中有类似的研究集中在以光或太赫兹波长工作的可调超材料。

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