The interaction between electronic and nuclear spins in the presence of external magnetic fields can be described by a spin Hamiltonian, with parameters obtained from first principles, electronic structure calculations. We describe an approach to compute these parameters, applicable to both molecules and solids, which is based on density functional theory (DFT) and real-space, all-electron calculations using finite elements (FE). We report results for hyperfine tensors, zero field splitting tensors (spin-spin component), and nuclear quadrupole tensors of a series of molecules and of the nitrogen-vacancy center in diamond. We compare our results with calculations using Gaussian orbitals and plane-wave basis sets, and we discuss their numeric...
We present a method for a subsystem-based calculation of indirect nuclear spin-spin coupling tensors...
The authors' magnetic field density functional theory is extended to include electron spin-dependent...
The performance of density-functional theory to solve the exact, nonrelativistic, many-electron prob...
Abstract Understanding the quantum dynamics of spin defects and their coherence properties requires ...
In this paper it is argued that the use of density functional theory (DFT) to solve the exact, non-r...
Numerical simulations based on the fundamental laws of quantum mechanics lead to invaluable insights...
This thesis presents quantum chemical calculations, applications of the response function formalism ...
The use of small molecule density functional theory calculations to enhance and complement experimen...
We give an account of some recent advances in the development of ab initio methods for the calculati...
The topic of this work is the quantum-mechanical description of elementary magnetic excitations, so-...
This thesis presents quantum chemical calculations, applications of the response function formalism ...
The calculation of interatomic magnetic exchange interactions entering the Heisenberg model is outli...
These studies are aimed at elucidating magnetic properties of metal complexes via ab initio electron...
Density functional theory is applied to the calculation ofthe isotropic byperfine coupJing constants...
The spin of an electron often misleadingly interpreted as the classical rotationof a particle. The q...
We present a method for a subsystem-based calculation of indirect nuclear spin-spin coupling tensors...
The authors' magnetic field density functional theory is extended to include electron spin-dependent...
The performance of density-functional theory to solve the exact, nonrelativistic, many-electron prob...
Abstract Understanding the quantum dynamics of spin defects and their coherence properties requires ...
In this paper it is argued that the use of density functional theory (DFT) to solve the exact, non-r...
Numerical simulations based on the fundamental laws of quantum mechanics lead to invaluable insights...
This thesis presents quantum chemical calculations, applications of the response function formalism ...
The use of small molecule density functional theory calculations to enhance and complement experimen...
We give an account of some recent advances in the development of ab initio methods for the calculati...
The topic of this work is the quantum-mechanical description of elementary magnetic excitations, so-...
This thesis presents quantum chemical calculations, applications of the response function formalism ...
The calculation of interatomic magnetic exchange interactions entering the Heisenberg model is outli...
These studies are aimed at elucidating magnetic properties of metal complexes via ab initio electron...
Density functional theory is applied to the calculation ofthe isotropic byperfine coupJing constants...
The spin of an electron often misleadingly interpreted as the classical rotationof a particle. The q...
We present a method for a subsystem-based calculation of indirect nuclear spin-spin coupling tensors...
The authors' magnetic field density functional theory is extended to include electron spin-dependent...
The performance of density-functional theory to solve the exact, nonrelativistic, many-electron prob...