The Tamm–Dancoff approximation (TDA) can be applied to the computation of excitation energies using time-dependent Hartree–Fock (TD-HF) and time-dependent density-functional theory (TD-DFT). In addition to simplifying the resulting response equations, the TDA has been shown to significantly improve the calculation of triplet excitation energies in these theories, largely overcoming issues associated with triplet instabilities of the underlying reference wave functions. Here, we examine the application of the TDA to the calculation of another response property involving triplet perturbations, namely the indirect nuclear spin–spin coupling constant. Particular attention is paid to the accuracy of the triplet spin–dipole and Fermi-contact comp...
© 2011 American Institute of Physics. The electronic version of this article is the complete one and...
A new versatile code based on Python scripts was developed to calculate spin–orbit coupling (SOC) el...
Sum-over-states density functional perturbation theory (SOS-DFPT) (Malkin, V. G.; Malkina, O. L.; Ca...
The Tamm–Dancoff approximation (TDA) can be applied to the computation of excitation energies using ...
The Tamm–Dancoff approximation (TDA) can be applied to the computation of excitation energies using ...
The Tamm–Dancoff approximation (TDA) can be applied to the computation of excitation energies using ...
Hydrogen-bond-transmitted indirect nuclear spin–spin coupling constants have been calculated by line...
The utility of a Hartree–Fock triplet stability threshold, for identifying time-dependent density fu...
Singlet and triplet vertical excitation energies from time-dependent density functional theory (TDDF...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) [Z. Li and W....
Compared with closed-shell systems, open-shell systems place three additional challenges to time-dep...
The performance of the strongly constrained and appropriately normed (SCAN) meta-generalised gradien...
Spin-flip time-dependent density functional theory (SF-TD-DFT) with the full noncollinear hybrid exc...
The importance of intermediate triplet states and the nature of excited states has gained interest i...
The time-dependent density functional based tight-binding (TD-DFTB) approach is generalized to accou...
© 2011 American Institute of Physics. The electronic version of this article is the complete one and...
A new versatile code based on Python scripts was developed to calculate spin–orbit coupling (SOC) el...
Sum-over-states density functional perturbation theory (SOS-DFPT) (Malkin, V. G.; Malkina, O. L.; Ca...
The Tamm–Dancoff approximation (TDA) can be applied to the computation of excitation energies using ...
The Tamm–Dancoff approximation (TDA) can be applied to the computation of excitation energies using ...
The Tamm–Dancoff approximation (TDA) can be applied to the computation of excitation energies using ...
Hydrogen-bond-transmitted indirect nuclear spin–spin coupling constants have been calculated by line...
The utility of a Hartree–Fock triplet stability threshold, for identifying time-dependent density fu...
Singlet and triplet vertical excitation energies from time-dependent density functional theory (TDDF...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) [Z. Li and W....
Compared with closed-shell systems, open-shell systems place three additional challenges to time-dep...
The performance of the strongly constrained and appropriately normed (SCAN) meta-generalised gradien...
Spin-flip time-dependent density functional theory (SF-TD-DFT) with the full noncollinear hybrid exc...
The importance of intermediate triplet states and the nature of excited states has gained interest i...
The time-dependent density functional based tight-binding (TD-DFTB) approach is generalized to accou...
© 2011 American Institute of Physics. The electronic version of this article is the complete one and...
A new versatile code based on Python scripts was developed to calculate spin–orbit coupling (SOC) el...
Sum-over-states density functional perturbation theory (SOS-DFPT) (Malkin, V. G.; Malkina, O. L.; Ca...