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Novel Microwave Devices using Tunable Negative Index Metamaterials and Ferrites

机译:新型微波器件使用可调负指数超材料和铁氧体

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Next generation microwave devices require to be multifunctional for efficient, cost effective operation in light weight, low volume structures. A miniature tunable negative index metamaterial phase shifter and an ultra wideband phased array antenna have been designed using ferrite materials. Negative permeability ferrite material in combination with negative permittivity of plasmonic wires produces a tunable negative refractive index metamaterial (TNIM). The TNIM shows a phase shift with a figure of merit of nearly 180°/kOe of applied magnetic field. Investigation of loss in X- and Q-band TNIM reveals that high frequency loss is more due to ferrite quality rather that the design of the TNIM. The miniature, 10:1 bandwidth current sheet phased array antenna is designed using magnetic ferrite as absorber.
机译:下一代微波器件需要在重量轻,低音量结构中的高效,成本有效的操作进行多功能,但是。使用铁氧体材料设计了微型可调负指数超材料移位器和超宽带相控阵天线。负渗透性铁氧体材料与等离子体线的负介电常数组合产生可调谐负折射率超材料(TNIM)。 TNIM表示具有近180°/ koe的施加磁场的优点的相移。 X-和Q频段TNIM的损失调查显示,由于铁氧体质量而不是TNIM的设计,高频损失更加频率。微型,10:1带宽电流纸张相控阵天线使用磁铁氧体作为吸收器设计。

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