The density functional approach was evaluated for electron spin resonance (ESR) parameters in the relativistic zero order regular approximation in small metal compounds. The effects of spin-orbit coupling and spin polarization on the magnetic hyperfine interaction were investigated. It was shown that relativistic effects in the calculation of the hyperfine parameters were large not only for the heavy metals but also for ligands bound to heavy elements due to secondary effects
In the present work a set of formal relations connecting different approaches to calculate relativis...
Fully relativistic calculations of the magnetic moments and hyperfine fields of the ferromagnetic me...
In order to investigate the effect of the spin-orbit interaction on strong magnetism, we have develo...
This thesis presents quantum chemical calculations, applications of the response function formalism ...
This thesis presents quantum chemical calculations, applications of the response function formalism ...
Electron and nuclear magnetic resonance spectroscopies are indispensable and powerful methods for in...
Based on the spin-polarized version of the multiple scattering theory, a relativistically correct fo...
Different approaches are compared for relativistic density functional theory (DFT) and Hartree–Fock ...
In this paper we will calculate the effect of spin–orbit coupling on properties of closed shell mole...
A DFT-based method is presented which allows the computation of all-electron NMR shifts of metallic ...
The effect of the relativistic spin-orbit (SO) interaction on the bonding in the early actinides has...
Spin-orbit coupling constants for various orbitals of first-, second- and third-row transition metal...
Density functional theory is applied to the calculation ofthe isotropic byperfine coupJing constants...
The description of the magnetic properties of interacting many-particle systems has been one of the ...
Density functional theory (DFT) calculations of molecular hyperfine tensors were implemented as a se...
In the present work a set of formal relations connecting different approaches to calculate relativis...
Fully relativistic calculations of the magnetic moments and hyperfine fields of the ferromagnetic me...
In order to investigate the effect of the spin-orbit interaction on strong magnetism, we have develo...
This thesis presents quantum chemical calculations, applications of the response function formalism ...
This thesis presents quantum chemical calculations, applications of the response function formalism ...
Electron and nuclear magnetic resonance spectroscopies are indispensable and powerful methods for in...
Based on the spin-polarized version of the multiple scattering theory, a relativistically correct fo...
Different approaches are compared for relativistic density functional theory (DFT) and Hartree–Fock ...
In this paper we will calculate the effect of spin–orbit coupling on properties of closed shell mole...
A DFT-based method is presented which allows the computation of all-electron NMR shifts of metallic ...
The effect of the relativistic spin-orbit (SO) interaction on the bonding in the early actinides has...
Spin-orbit coupling constants for various orbitals of first-, second- and third-row transition metal...
Density functional theory is applied to the calculation ofthe isotropic byperfine coupJing constants...
The description of the magnetic properties of interacting many-particle systems has been one of the ...
Density functional theory (DFT) calculations of molecular hyperfine tensors were implemented as a se...
In the present work a set of formal relations connecting different approaches to calculate relativis...
Fully relativistic calculations of the magnetic moments and hyperfine fields of the ferromagnetic me...
In order to investigate the effect of the spin-orbit interaction on strong magnetism, we have develo...