In this work we use a multiscale approach toward a realistic design of a permanent magnet based on MnAl τ-phase and elucidate how the antiphase boundary defects present in this material affect the energy product. We show how the extrinsic properties of a microstructure depend on the intrinsic properties of a structure with defects by performing micromagnetic simulations. For an accurate estimation of the energy product of a realistic permanent magnet based on the MnAl τ-phase with antiphase boundaries, we quantify for the first time the exchange interaction strength across the antiphase boundary defect with a simple approach derived from the first-principles calculations. These two types of calculations performed at different scales are lin...
In order to understand the genesis of the magnetic tau-phase of MnAl alloy, which due to its multiph...
Low-temperature MnBi (hexagonal NiAs phase) exhibits anomalies in the lattice constants (a, c) and b...
The tau- phase of the binary Mn-Al system is a promising rare-earth free permanent magnet. However, ...
In this paper, we use a multiscale approach to describe a realistic model of a permanent magnet base...
Abstract We quantify and explain the effects of both anti-phase boundaries and twin defects in as-t...
In this work we develop an atomistic spin dynamics model for the ideal Mn 50 Al 50 τ -phase b...
A complex interplay between magnetic domain structure and crystalline imperfections, here twins, is ...
The complex and intriguing properties of the ferrimagnetic half metal magnetite (Fe3O4) are of conti...
International audienceWe present a first-principles calculation of the electronic structure near an ...
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
Micromagnetic finite element calculations using a magnetic vector potential to treat long-range dipo...
There exists a wealth of unexplored functionality in the relationship between strain and properties,...
We present a first-principles approach for the computation of the magnetic Gibbs free energy of mate...
Paper presented at the IEEE International Magnetics Conference that was held in Dresden (Germany) on...
In this work, we employ and critically evaluate a first-principles approach based on supercell calcu...
In order to understand the genesis of the magnetic tau-phase of MnAl alloy, which due to its multiph...
Low-temperature MnBi (hexagonal NiAs phase) exhibits anomalies in the lattice constants (a, c) and b...
The tau- phase of the binary Mn-Al system is a promising rare-earth free permanent magnet. However, ...
In this paper, we use a multiscale approach to describe a realistic model of a permanent magnet base...
Abstract We quantify and explain the effects of both anti-phase boundaries and twin defects in as-t...
In this work we develop an atomistic spin dynamics model for the ideal Mn 50 Al 50 τ -phase b...
A complex interplay between magnetic domain structure and crystalline imperfections, here twins, is ...
The complex and intriguing properties of the ferrimagnetic half metal magnetite (Fe3O4) are of conti...
International audienceWe present a first-principles calculation of the electronic structure near an ...
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
Micromagnetic finite element calculations using a magnetic vector potential to treat long-range dipo...
There exists a wealth of unexplored functionality in the relationship between strain and properties,...
We present a first-principles approach for the computation of the magnetic Gibbs free energy of mate...
Paper presented at the IEEE International Magnetics Conference that was held in Dresden (Germany) on...
In this work, we employ and critically evaluate a first-principles approach based on supercell calcu...
In order to understand the genesis of the magnetic tau-phase of MnAl alloy, which due to its multiph...
Low-temperature MnBi (hexagonal NiAs phase) exhibits anomalies in the lattice constants (a, c) and b...
The tau- phase of the binary Mn-Al system is a promising rare-earth free permanent magnet. However, ...