Tunable Metacomposites Containing Hybrid Co- And Fe-Based Ferromagnetic Microwires

2016 PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM (PIERS)(2016)

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摘要
Metamaterials have attracted tremendous research interest due to their fascinating unusual properties that are not available from nature, such as negative refractive index, reverse Doppler Effect, negative compressibility, etc. [1]. However, conventional metamaterials are simply structures as their special properties are independent to intrinsic properties of building blocks, which tarnishes their application perspectives to a large extent. Ferromagnetic microwires have been reported feasible to create electromagnetically double negative (DNG) medium by arranging them in a parallel [2] and orthogonal manner [3]. Recently we proposed the concept of metacomposites containing Fe-based microwires and revealed their DNG properties in line with advantages such as structural integrity and economic processing over metamaterials [4, 5]. Herein, as a step further, metacomposites containing hybrid Co- and Fe-based microwire arrays with different topology are designed and fabricated. A tunable DNG feature under external dc magnetic field is observed in the metacomposite containing continuous wire arrays evidenced by transmission windows and a negative dielectric permittivity dispersion. A DNG/band stop characteristic is observed in the metacomposite containing short-cut wires confirmed by a dip at 6 GHz in the transmission spectrum.
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ferromagnetic resonance,FMR,negative magnetic permeability,parallel arrangement,window positions,redshift-blueshift behavior,pure Fe-based orthogonal arrays,DNG-bandstop feature,short-cut Co-based wires,dipole resonance,synergistic role,hybrid metacomposites,bandstop operating frequency,mesostructural factors,microwave cloaking,radio frequency identification,magnetically tuned DNG feature,transmission phase velocity,negative values,continuous hybrid wires,glass fiber direction,magnetic field tunable properties,free-space measurement,metacomposite sample,autoclave curing procedure,continuous orthogonal Fe-based wire array,short-cut Co-based wire array,parallel Fe-based wire array,parallel Co-based wire array,E-glass 913 glass fibers reinforced prepregs,short-cut wires,negative dielectric permittivity dispersion,transmission windows,external dc magnetic field,structural integrity,DNG medium,electromagnetically double negative medium,ferromagnetic microwires,intrinsic properties,metamaterials,size 3.4 mum,size 12.8 mum,size 2.4 mum,size 3 mm,size 10 mm,frequency 0.9 GHz to 17 GHz,Fe4Co68.7NiB13Si11Mo2.3,Fe77Si10B10C3
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