The spin-adaptation of single-reference quantum chemical methods for excited states of open-shell systems has been nontrivial. The primary reason is that the configuration space, generated by a truncated rank of excitations from only one component of a reference multiplet, is spin-incomplete. Those "missing" configurations are of higher ranks and can, in principle, be recaptured by a particular class of excitation operators. However, the resulting formalisms are then quite involved and there are situations [e.g., time-dependent density functional theory (TD-DFT) under the adiabatic approximation] that prevent one from doing so. To solve this issue, we propose here a tensor-coupling scheme that invokes all the components of a refer...
A time-independent density functional approach to the calculation of excitation energies from the gr...
We report a novel scheme for computing electronic excitation energies within the framework of densit...
Conventional time-dependent density functional theory (TDDFT) is based on a closed-shell Kohn–Sham (...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) [Z. Li and W....
The excited states of open-shell systems calculated by unrestricted Kohn-Sham-based time-dependent d...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) is extended t...
Compared with closed-shell systems, open-shell systems place three additional challenges to time-dep...
Compared with closed-shell systems, open-shell systems place three additional challenges to time-dep...
The use of the mixed reference (MR) reduced density matrix, which combines reduced density matrices ...
A spin-adapted configuration interaction with singles method that is based on a restricted open-shel...
Spin-flip time-dependent density functional theory (SF-TD-DFT) with the full noncollinear hybrid exc...
Trabajo presentado al: "Deutsche Physikalische Gesellschaft Spring Meeting" celebrado en Berlín (Ale...
A time-independent density functional approach to the calculation of excitation energies from the gr...
The topic of this work is the quantum-mechanical description of elementary magnetic excitations, so-...
Time-dependent density functional theory (TD-DFT) has been very successful in accessing low-lying ex...
A time-independent density functional approach to the calculation of excitation energies from the gr...
We report a novel scheme for computing electronic excitation energies within the framework of densit...
Conventional time-dependent density functional theory (TDDFT) is based on a closed-shell Kohn–Sham (...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) [Z. Li and W....
The excited states of open-shell systems calculated by unrestricted Kohn-Sham-based time-dependent d...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) is extended t...
Compared with closed-shell systems, open-shell systems place three additional challenges to time-dep...
Compared with closed-shell systems, open-shell systems place three additional challenges to time-dep...
The use of the mixed reference (MR) reduced density matrix, which combines reduced density matrices ...
A spin-adapted configuration interaction with singles method that is based on a restricted open-shel...
Spin-flip time-dependent density functional theory (SF-TD-DFT) with the full noncollinear hybrid exc...
Trabajo presentado al: "Deutsche Physikalische Gesellschaft Spring Meeting" celebrado en Berlín (Ale...
A time-independent density functional approach to the calculation of excitation energies from the gr...
The topic of this work is the quantum-mechanical description of elementary magnetic excitations, so-...
Time-dependent density functional theory (TD-DFT) has been very successful in accessing low-lying ex...
A time-independent density functional approach to the calculation of excitation energies from the gr...
We report a novel scheme for computing electronic excitation energies within the framework of densit...
Conventional time-dependent density functional theory (TDDFT) is based on a closed-shell Kohn–Sham (...