DocumentCode :
2025877
Title :
Effective conductivity and magnetic permeability of nanostructured media in magnetic field
Author :
Rinkevich, A.B. ; Perov, D.V.
Author_Institution :
Inst. of Metal Phys., Ekaterinburg, Russia
fYear :
2013
fDate :
16-21 Sept. 2013
Firstpage :
463
Lastpage :
465
Abstract :
The problem of homogenization of the nanostructured materials placed in DC magnetic field has been discussed. The experimental data are obtained for the several classes of nanostructured materials: metallic superlattices, metal-dielectric thin films and 3D-nanostructured metamaterials. All these materials contain ferro- or ferrimagnetic component. The transmission and reflection coefficients were measured on the waves of millimeter waveband. It has been shown that the experimental frequency spectra of the coefficients in zero magnetic field can be described by the effective conductivity and dielectric permittivity. The spectra of ferromagnetic resonance, however, cannot be calculated correctly with the averaged magnetization.
Keywords :
electrical conductivity; electro-optical effects; ferrimagnetic materials; ferromagnetic materials; magnetic permeability; magnetisation; magneto-optical effects; metallic thin films; nanophotonics; nanostructured materials; optical constants; optical metamaterials; optical multilayers; permittivity; superlattices; 3D-nanostructured metamaterials; DC magnetic field; averaged magnetization; dielectric permittivity; effective conductivity; experimental frequency spectra; ferrimagnetic component; ferromagnetic component; ferromagnetic resonance spectra; magnetic permeability; metal-dielectric thin films; metallic superlattices; millimeter waveband waves; nanostructured material homogenization; nanostructured media; reflection coefficients; transmission coefficients; zero magnetic field; Conductivity; Magnetic fields; Magnetic materials; Magnetic resonance; Magnetization; Metamaterials;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS), 2013 7th International Congress on
Conference_Location :
Talence
Print_ISBN :
978-1-4799-1229-2
Type :
conf
DOI :
10.1109/MetaMaterials.2013.6809087
Filename :
6809087
Link To Document :
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