Publication | Open Access
Magnetic photonic band-gap material at microwave frequencies based on ferromagnetic nanowires
72
Citations
12
References
2003
Year
EngineeringMetamaterialsMagnetic MaterialsElectromagnetic MetamaterialsBand GapQuantum MetamaterialsMagnetismNanophotonicsMaterials SciencePhotonicsPhysicsMagnetic NanowiresPhotonic MaterialsSpatial PeriodicityPhotonic DeviceMicrowave PhotonicsMagnetic MaterialSpintronicsMicrowave FrequenciesNatural SciencesApplied PhysicsFerromagnetic NanowiresDynamic Metamaterials
We present an experimental investigation of a class of microwave photonic band-gap (PBG) materials, in which the magnetic permeability μ varies periodically within the material. This material is fabricated using a periodic arrangement of arrays of magnetic nanowires. As for dielectric or metallic PBG, the band-gap behavior varies with the geometrical parameters fixing the spatial periodicity of the magnetic structure. The magnetic photonic band gap is induced by the presence of a ferromagnetic resonance effect in the vicinity of the band gap.
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