We present a method of calculating crystal field coefficients of rare-earth/transition-metal (RE-TM) magnets within density-functional theory (DFT). The principal idea of the method is to calculate the crystal field potential of the yttrium analogue ('Y-analogue') of the RE-TM magnet, i.e. the material where the lanthanide elements have been substituted with yttrium. The advantage of dealing with Y-analogues is that the methodological and conceptual difficulties associated with treating the highly-localized 4f electrons in DFT are avoided, whilst the nominal valence electronic structure principally responsible for the crystal field is preserved. In order to correctly describe the crystal field potential in the core region of the atoms we us...
We report on theoretical investigations of intermetallic phases derived from the ThMn12-type crystal...
Magnetocrystalline anisotropy, the microscopic origin of permanent magnetism, is often explained in ...
© 2020 American Physical Society. The microscopic justification for the dimerization in ladder-type ...
We present a method of calculating crystal field coefficients of rare-earth/transition-metal (RE-TM)...
It is investigated how electron-electron correlations affect the intrinsic properties of rare-earth ...
The ab initio methodology for the first-principle derivation of crystal-field (CF) parameters for la...
We show, by carefully examining the change of total energy in constrained variational calculations u...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
A parameter free approach for the calculation of the crystal field splitting of the lowest Russel-Sa...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
The flexibility of first-principles (ab initio) calculations with the SO-CASSCF (complete active spa...
International audienceTwo series of lanthanide complexes have been cho-sen to analyze trends in the ...
On a effectué des calculs self-consistents et relativistes de la structure de bande pour les phases ...
We present an investigation into the intrinsic magnetic properties of the compounds YCo5 and GdCo5, ...
The experimental temperature dependence (T = 2-300 K) of single crystal bulk and site susceptibiliti...
We report on theoretical investigations of intermetallic phases derived from the ThMn12-type crystal...
Magnetocrystalline anisotropy, the microscopic origin of permanent magnetism, is often explained in ...
© 2020 American Physical Society. The microscopic justification for the dimerization in ladder-type ...
We present a method of calculating crystal field coefficients of rare-earth/transition-metal (RE-TM)...
It is investigated how electron-electron correlations affect the intrinsic properties of rare-earth ...
The ab initio methodology for the first-principle derivation of crystal-field (CF) parameters for la...
We show, by carefully examining the change of total energy in constrained variational calculations u...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
A parameter free approach for the calculation of the crystal field splitting of the lowest Russel-Sa...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
The flexibility of first-principles (ab initio) calculations with the SO-CASSCF (complete active spa...
International audienceTwo series of lanthanide complexes have been cho-sen to analyze trends in the ...
On a effectué des calculs self-consistents et relativistes de la structure de bande pour les phases ...
We present an investigation into the intrinsic magnetic properties of the compounds YCo5 and GdCo5, ...
The experimental temperature dependence (T = 2-300 K) of single crystal bulk and site susceptibiliti...
We report on theoretical investigations of intermetallic phases derived from the ThMn12-type crystal...
Magnetocrystalline anisotropy, the microscopic origin of permanent magnetism, is often explained in ...
© 2020 American Physical Society. The microscopic justification for the dimerization in ladder-type ...