Microwave properties of magnetic photonic crystals, namely, silica opal matrices doped with nickel-zinc or manganese-zinc iron spinels have been investigated in the frequency range from 26 to 38 GHz. The experiments were carried out using two methods: 1) the measurements of microwave absorption in a cavity resonator and 2) electromagnetic wave penetration through a sample placed into a waveguide. It has been found that these magnetic nanocomposites show resonance-type dependence of the transmission coefficient versus magnetic field. Magnetic resonance spectra have been studied. The resonance variations in the nickel-zinc ferrite-doped nanocomposite are up to 70% that enables to use that material in magnetic field driven microwave devices. ©...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
Natl. Acad. Sci. Ukraine Radio-Physics Microwave Electron.;Scientific Council of the National Academ...
Magnetic and dielectric materials can be blended to enhance absorption properties at microwave frequ...
In recent years, the infrared and microwave properties of opal matrices have been intensively studie...
Interaction of electromagnetic waves with nanocomposites of materials obtained by doping of opal mat...
Investigation of magnetic properties and microwave resonance phenomena in nanocomposites based on op...
Dielectric properties of nanocomposites based on opal matrices with ZnO particles are studied. Micro...
Investigation and application of extraordinary electromagnetic properties of metamaterials and nanoc...
The microwave properties of 3D nanocomposites based on opal matrices containing one or two transitio...
Photonic crystals become fashionable object of investigation on microwaves and the interest is cause...
We analyze the microwave properties of nanocomposite materials obtained by embedding opal matrices (...
Photonic metamaterials consisting of artificial opal with magnetic inclusions were considered, used ...
Magnetic properties of magnetophotonic crystals based on opal matrices have been studied as well as ...
A comparative study at the ambient temperature of the ferromagnetic resonance (FMR) spectra of Ni/Zn...
Manganese zinc ferrite nanopowder was prepared by sol–gel auto combustion method. XRD analysis was c...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
Natl. Acad. Sci. Ukraine Radio-Physics Microwave Electron.;Scientific Council of the National Academ...
Magnetic and dielectric materials can be blended to enhance absorption properties at microwave frequ...
In recent years, the infrared and microwave properties of opal matrices have been intensively studie...
Interaction of electromagnetic waves with nanocomposites of materials obtained by doping of opal mat...
Investigation of magnetic properties and microwave resonance phenomena in nanocomposites based on op...
Dielectric properties of nanocomposites based on opal matrices with ZnO particles are studied. Micro...
Investigation and application of extraordinary electromagnetic properties of metamaterials and nanoc...
The microwave properties of 3D nanocomposites based on opal matrices containing one or two transitio...
Photonic crystals become fashionable object of investigation on microwaves and the interest is cause...
We analyze the microwave properties of nanocomposite materials obtained by embedding opal matrices (...
Photonic metamaterials consisting of artificial opal with magnetic inclusions were considered, used ...
Magnetic properties of magnetophotonic crystals based on opal matrices have been studied as well as ...
A comparative study at the ambient temperature of the ferromagnetic resonance (FMR) spectra of Ni/Zn...
Manganese zinc ferrite nanopowder was prepared by sol–gel auto combustion method. XRD analysis was c...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
Natl. Acad. Sci. Ukraine Radio-Physics Microwave Electron.;Scientific Council of the National Academ...
Magnetic and dielectric materials can be blended to enhance absorption properties at microwave frequ...