Results of frequency-dependent ferromagnetic resonance (FMR) measurements are presented for thin Fe-Zr-N nanocrystalline films with random magnetocrystal line anisotropy and induced uniaxial anisotropy. The study is done by changing the composition, the grain size and the magnitude of the induced anisotropy. We show that the magnetization dynamics is strongly influenced by the structural parameters of our samples. Although the frequency-dependent spectra can be analysed on the basis of the Landau-Lifshitz equation, an extra field H-shift has to be introduced in order to have agreement between the experiment and calculations. This extra field does not depend on the saturation magnetization and increases significantly when the grain size decr...
We report on the transition between a magnetic stripe domain structure and in-plane orientation of t...
We examine room-temperature magnetic relaxation in polycrystalline Fe films. Out-of-plane ferromagne...
International audience– We demonstrate that an in-plane uniaxial anisotropy may be induced in non-am...
Results of frequency-dependent ferromagnetic resonance (FMR) measurements are presented for thin Fe-...
In this work we study the influence of surface roughness on the magnetization dynamics of soft magne...
The periodicity and angular spread of the in-plane magnetization for ultrasoft nanocrystalline FeZrN...
The effective magnetic anisotropy of the ferromagnetic nanocrystalline Fe-Zr-N films prepared by mag...
Single phase nano-crystalline zinc ferrite thin films were deposited by RF-magnetron sputtering on q...
Magnetodynamical properties of nanomagnets are affected by the demagnetizing fields created by the s...
Nanocrystalline soft magnetic Fe–Zr–N films have been successfully deposited by DC magnetron reactiv...
The magnetic structure of thin nanocrystalline films with a random distribution of magnetization eas...
Magnetic characteristics and their spatial distribution of magnetron sputtered nanocrystalline NiFe ...
Nanocrystalline Fe–Ni thin films were prepared by partial crystallization of vapour deposited amorph...
The phase and structural states of nanocrystalline Fe-based films alloyed with Zr and N, which were ...
We report on the transition between a magnetic stripe domain structure and in-plane orientation of t...
We examine room-temperature magnetic relaxation in polycrystalline Fe films. Out-of-plane ferromagne...
International audience– We demonstrate that an in-plane uniaxial anisotropy may be induced in non-am...
Results of frequency-dependent ferromagnetic resonance (FMR) measurements are presented for thin Fe-...
In this work we study the influence of surface roughness on the magnetization dynamics of soft magne...
The periodicity and angular spread of the in-plane magnetization for ultrasoft nanocrystalline FeZrN...
The effective magnetic anisotropy of the ferromagnetic nanocrystalline Fe-Zr-N films prepared by mag...
Single phase nano-crystalline zinc ferrite thin films were deposited by RF-magnetron sputtering on q...
Magnetodynamical properties of nanomagnets are affected by the demagnetizing fields created by the s...
Nanocrystalline soft magnetic Fe–Zr–N films have been successfully deposited by DC magnetron reactiv...
The magnetic structure of thin nanocrystalline films with a random distribution of magnetization eas...
Magnetic characteristics and their spatial distribution of magnetron sputtered nanocrystalline NiFe ...
Nanocrystalline Fe–Ni thin films were prepared by partial crystallization of vapour deposited amorph...
The phase and structural states of nanocrystalline Fe-based films alloyed with Zr and N, which were ...
We report on the transition between a magnetic stripe domain structure and in-plane orientation of t...
We examine room-temperature magnetic relaxation in polycrystalline Fe films. Out-of-plane ferromagne...
International audience– We demonstrate that an in-plane uniaxial anisotropy may be induced in non-am...