The development of quantitative models for radiation damage effects in iron, iron alloys and steels, particularly for the high temperature properties of the alloys, requires understanding of magnetic interactions, which control the phase stability of ferritic-martensitic, ferritic, and austenitic steels. In this work, disordered magnetic configurations of pure iron and Fe-Cr alloys are investigated using Density Functional Theory (DFT) formalism, in the form of constrained non-collinear magnetic calculations, with the objective of creating a database of atomic magnetic moments and forces acting between the atoms. From a given disordered atomic configuration of either pure Fe or Fe-Cr alloy, a penalty contribution to the usual spin-polarized...
We propose a first-principles framework for longitudinal spin fluctuations (LSFs) in disordered para...
Density functional theory (DFT) calculations are performed to study the effects of ferromagnetism on...
We develop a self-consistent relativistic disordered local moment (RDLM) scheme aimed at describing ...
The development of quantitative models for radiation damage effects in iron, iron alloys and steels,...
The development of interatomic potentials for magnetic transition metals, and particularly for iron,...
We investigate how the magnetic state influences the interaction of Cr substitutional impurities wit...
Fe-Cr alloys form the basis of many industrially important steels. Due to their excellent resistance...
International audienceAmong the ferromagnetic binary alloys, body centered cubic (bcc) Fe-Co is the ...
Systematic implementations of density functional calculations of magnetic materials, based on atomic...
Magnetism is a key driving force controlling several thermodynamic and kinetic properties of Fe-Cr s...
We review recent developments in the field of first-principles simulations of magnetic materials abo...
This thesis focus on the magnetic behavior, from single atoms to bulk materials. The materials consi...
The hexagonal close-packed (hcp) phase of iron is unstable under ambient conditions. The limited amo...
We develop a self-consistent relativistic disordered local moment (RDLM) scheme aimed at describing ...
Using the density functional theory, we perform a full atomic relaxation of the bulk ferrite with 12...
We propose a first-principles framework for longitudinal spin fluctuations (LSFs) in disordered para...
Density functional theory (DFT) calculations are performed to study the effects of ferromagnetism on...
We develop a self-consistent relativistic disordered local moment (RDLM) scheme aimed at describing ...
The development of quantitative models for radiation damage effects in iron, iron alloys and steels,...
The development of interatomic potentials for magnetic transition metals, and particularly for iron,...
We investigate how the magnetic state influences the interaction of Cr substitutional impurities wit...
Fe-Cr alloys form the basis of many industrially important steels. Due to their excellent resistance...
International audienceAmong the ferromagnetic binary alloys, body centered cubic (bcc) Fe-Co is the ...
Systematic implementations of density functional calculations of magnetic materials, based on atomic...
Magnetism is a key driving force controlling several thermodynamic and kinetic properties of Fe-Cr s...
We review recent developments in the field of first-principles simulations of magnetic materials abo...
This thesis focus on the magnetic behavior, from single atoms to bulk materials. The materials consi...
The hexagonal close-packed (hcp) phase of iron is unstable under ambient conditions. The limited amo...
We develop a self-consistent relativistic disordered local moment (RDLM) scheme aimed at describing ...
Using the density functional theory, we perform a full atomic relaxation of the bulk ferrite with 12...
We propose a first-principles framework for longitudinal spin fluctuations (LSFs) in disordered para...
Density functional theory (DFT) calculations are performed to study the effects of ferromagnetism on...
We develop a self-consistent relativistic disordered local moment (RDLM) scheme aimed at describing ...