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Carbon nanotube based millimeterwave fishnet metamaterials

机译:碳纳米管基毫米波鱼网超材料

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Fishnet metamaterials consist of two or more conducting fishnet layers separated by homogeneous dielectric layers. Different from other planar multilayer metamaterial structures fishnet metamaterials do not require vias for through-contacting between the layers. This allows low-cost production of three-dimensional metamaterials by spray coating with organic (carbon nanotubes CNTs) or metallic (silver) nano pigment inks. Spray coating has proven to be a low cost fabrication technique for high throughput. Numerical studies are pursued in this contribution to investigate fishnet metamaterial using nano pigment inks. In this work we compare fishnet metamaterial structures fabricated from spray coated layers of variable sheet conductance with fishnet metamaterial structures fabricated from highly conductive material with superimposed homogeneous CNT layers of low sheet conductance. In these cases the spray coated CNT layers allow to adjust the area resistance of the conductive layers for optimum broad-band design. The tunable resistance of sprayed thin films allows for an enhanced tailoring of the effective parameters of the metamaterial structures and, hence, for an enhancement of their bandwidth of negative refractive index.
机译:渔网超材料由两个或多个导电鱼网层组成,并由均质的介电层隔开。不同于其他平面多层超材料结构,渔网超材料不需要通孔用于各层之间的直通接触。这允许通过用有机(碳纳米管CNT)或金属(银)纳米颜料墨水进行喷涂来低成本生产三维超材料。事实证明,喷涂是实现高产量的低成本制造技术。对此进行了数值研究,以研究使用纳米颜料墨水的渔网超材料。在这项工作中,我们比较了由可变薄层电导率的喷涂层制成的鱼网超材料结构与由高导电性材料和低薄层电导率的叠加均匀CNT层制成的鱼网超材料结构。在这些情况下,喷涂的CNT层可调节导电层的面积电阻,以实现最佳的宽带设计。喷涂薄膜的可调电阻可以增强超材料结构的有效参数的调整,因此可以提高其负折射率的带宽。

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