We use first-principles calculations to investigate how deviations from perfect chemical order affect the magnetocrystalline anisotropy energy (MAE) in L10 FeNi. We first analyze the local chemical environment of the Fe atoms in various partially ordered configurations, using the orbital magnetic moment anisotropy (OMA) as proxy for a local contribution to the MAE. We are able to identify a specific nearest neighbor configuration and use this “favorable environment” to successfully design various structures with MAE higher than the perfectly ordered system. However, a systematic analysis of the correlation between local environment and OMA using smooth overlap of atomic positions indicates only a partial correlation, which exists only if th...
The random substitution of a non-magnetic species instead of Fe atoms in FePt-L10 bulk alloy will pe...
The magnetocrystalline anisotropy energy of atomically ordered $\mathrm{L}1_0$ FeNi (the meteoritic ...
The magnetic properties of FePt samples, potential materials for high density recording media, depen...
We use first principles calculations to investigate how deviations from perfect chemical order affec...
We perform first-principles calculations of the magnetocrystalline anisotropy energy (MAE) of the L1...
We use first-principles-based calculations to investigate the interplay between chemical order and t...
AbstractWe investigated the origin of strong magnetic anisotropy energy (MAE) in L10-type ordered Fe...
We investigate the effect of chemical disorder on the magnetic exchange couplings and the Curie temp...
AbstractWe investigated the origin of strong magnetic anisotropy energy (MAE) in L10-type ordered Fe...
We study the electronic and magnetic properties of L10 phase of FeNi, a perspective rare-earth-free ...
Recently, we outlined a scheme to investigate the effects of both short-ranged and long-ranged compo...
We study the magnetocrystalline anisotropy of Fe0.5Pd0.5 alloy using the first-principles spin-polar...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
The random substitution of a non-magnetic species instead of Fe atoms in FePt-L10 bulk alloy will pe...
The random substitution of a non-magnetic species instead of Fe atoms in FePt-L10 bulk alloy will pe...
The magnetocrystalline anisotropy energy of atomically ordered $\mathrm{L}1_0$ FeNi (the meteoritic ...
The magnetic properties of FePt samples, potential materials for high density recording media, depen...
We use first principles calculations to investigate how deviations from perfect chemical order affec...
We perform first-principles calculations of the magnetocrystalline anisotropy energy (MAE) of the L1...
We use first-principles-based calculations to investigate the interplay between chemical order and t...
AbstractWe investigated the origin of strong magnetic anisotropy energy (MAE) in L10-type ordered Fe...
We investigate the effect of chemical disorder on the magnetic exchange couplings and the Curie temp...
AbstractWe investigated the origin of strong magnetic anisotropy energy (MAE) in L10-type ordered Fe...
We study the electronic and magnetic properties of L10 phase of FeNi, a perspective rare-earth-free ...
Recently, we outlined a scheme to investigate the effects of both short-ranged and long-ranged compo...
We study the magnetocrystalline anisotropy of Fe0.5Pd0.5 alloy using the first-principles spin-polar...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
Tetragonal (L10) FeNi is a promising material for high-performance rare-earth-free permanent magnets...
The random substitution of a non-magnetic species instead of Fe atoms in FePt-L10 bulk alloy will pe...
The random substitution of a non-magnetic species instead of Fe atoms in FePt-L10 bulk alloy will pe...
The magnetocrystalline anisotropy energy of atomically ordered $\mathrm{L}1_0$ FeNi (the meteoritic ...
The magnetic properties of FePt samples, potential materials for high density recording media, depen...