In this work we develop an atomistic spin dynamics model for the ideal Mn 50 Al 50 τ -phase by means of first-principles calculations. The model is applied to study the domain wall and antiphase boundary phenomenology. In particular, it allows us to obtain the dependence on the interfacial exchange coupling of the nucleation and depinning fields, as well as the macroscopic magnetization profile across the antiphase boundary. We find that microscopic antiferromagnetic exchange coupling stronger than 10 meV could unavoidably lead to the formation of a domain wall at the antiphase boundary.European Horizon 2020 Framework Programme for Research and Innovation (2014- 2020) under Grant Agreement No. 686056, NOVAMAG
We have developed a fully microscopic theory of magnetic properties of the prototype molecular magne...
The structural and magnetic properties of Mn prepd. on single cryst. face-centered-tetragonal (fct) ...
Antiferromagnets (AFMs) are strong candidates for the future spintronic and memory applications larg...
In this work we use a multiscale approach toward a realistic design of a permanent magnet based on M...
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...
[EN]Based on ab initio calculations and spin dynamics simulations, we perform a detailed study on th...
The complex and intriguing properties of the ferrimagnetic half metal magnetite (Fe3O4) are of conti...
Using ab initio band-structure and model calculations, we studied magnetic properties of one of the ...
Paper presented at the IEEE International Magnetics Conference that was held in Dresden (Germany) on...
In this thesis, studies based on magnetization dynamics on atomic length scales are presented for a ...
Anti-phase boundaries (APBs) are structural defects which have been shown to be responsible for the ...
The MnAs compound shows a first-order transition at TC42 °C, and a second-order transition at Tt 120...
The topic of this Thesis is magnetization dynamics on atomic length scales. A computational scheme, ...
Atomistic modelling of magnetic materials provides unprecedented detail about the underlying physica...
We have developed a fully microscopic theory of magnetic properties of the prototype molecular magne...
The structural and magnetic properties of Mn prepd. on single cryst. face-centered-tetragonal (fct) ...
Antiferromagnets (AFMs) are strong candidates for the future spintronic and memory applications larg...
In this work we use a multiscale approach toward a realistic design of a permanent magnet based on M...
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...
[EN]Based on ab initio calculations and spin dynamics simulations, we perform a detailed study on th...
The complex and intriguing properties of the ferrimagnetic half metal magnetite (Fe3O4) are of conti...
Using ab initio band-structure and model calculations, we studied magnetic properties of one of the ...
Paper presented at the IEEE International Magnetics Conference that was held in Dresden (Germany) on...
In this thesis, studies based on magnetization dynamics on atomic length scales are presented for a ...
Anti-phase boundaries (APBs) are structural defects which have been shown to be responsible for the ...
The MnAs compound shows a first-order transition at TC42 °C, and a second-order transition at Tt 120...
The topic of this Thesis is magnetization dynamics on atomic length scales. A computational scheme, ...
Atomistic modelling of magnetic materials provides unprecedented detail about the underlying physica...
We have developed a fully microscopic theory of magnetic properties of the prototype molecular magne...
The structural and magnetic properties of Mn prepd. on single cryst. face-centered-tetragonal (fct) ...
Antiferromagnets (AFMs) are strong candidates for the future spintronic and memory applications larg...