This paper presents an evaluation of the performance of time-dependent density-functional response theory (TD-DFRT) for the calculation of high-lying bound electronic excitation energies of molecules. TD-DFRT excitation energies are reported for a large number of states for each of four molecules: N2, CO, CH2O, and C2H4. In contrast to the good results obtained for low-lying states within the time-dependent local density approximation (TDLDA), there is a marked deterioration of the results for high-lying bound states. This is manifested as a collapse of the states above the TDLDA ionization threshold, which is at ??HOMOLDA (the negative of the highest occupied molecular orbital energy in the LDA). The ??HOMOLDA is much lower than the true i...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
We present a consistent linear response formulation of the density functional based tight-binding me...
We present a consistent linear response formulation of the density functional based tight-binding me...
Time-dependent density-functional (TDDFT) methods are applied within the adiabatic approximation to ...
A new formulation of time-dependent density functional tight binding (TD-DFTB) is reported in this p...
In this article we explain how the existing linear response theory of time-dependent density-functio...
We propose a new method of calculating electronically excited states that combines a density functio...
We study linear-response time-dependent density-functional theory (DFT) based on the single-determin...
We propose a new method of calculating electronically excited states that combines a density functio...
We propose a new method of calculating electronically excited states that combines a density functio...
© 2021 Marcos Andres Casanova PaezThis thesis presents the implementation, assessment, and applicabi...
The restricted excitation subspace approximation is explored as a basis to reduce the memory storage...
Abstract: Time-dependent density functional theory (TDDFT) is a powerful tool allowing for accurate ...
WOS:000297860500015International audienceAlmost all time-dependent density-functional theory (TDDFT)...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
We present a consistent linear response formulation of the density functional based tight-binding me...
We present a consistent linear response formulation of the density functional based tight-binding me...
Time-dependent density-functional (TDDFT) methods are applied within the adiabatic approximation to ...
A new formulation of time-dependent density functional tight binding (TD-DFTB) is reported in this p...
In this article we explain how the existing linear response theory of time-dependent density-functio...
We propose a new method of calculating electronically excited states that combines a density functio...
We study linear-response time-dependent density-functional theory (DFT) based on the single-determin...
We propose a new method of calculating electronically excited states that combines a density functio...
We propose a new method of calculating electronically excited states that combines a density functio...
© 2021 Marcos Andres Casanova PaezThis thesis presents the implementation, assessment, and applicabi...
The restricted excitation subspace approximation is explored as a basis to reduce the memory storage...
Abstract: Time-dependent density functional theory (TDDFT) is a powerful tool allowing for accurate ...
WOS:000297860500015International audienceAlmost all time-dependent density-functional theory (TDDFT)...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
We present a consistent linear response formulation of the density functional based tight-binding me...
We present a consistent linear response formulation of the density functional based tight-binding me...