Different ways to extract properties of excited states from time-dependent density functional theory (TD-DFT) calculations are compared to ab initio results obtained with the Equation of Motion Coupled Cluster approach. The recently proposed a posteriori Tamm-Dancoff approximation (ATDA) predicts the permanent dipole moments to be underestimated by 25% on average, close to the results of the relaxed density TD-DFT formalism, quadratic response formalism, and numerical energy derivatives, while the unrelaxed density approximation results are less accurate (40% overestimate). We also propose a correction for TD-DFT excitation energies, which are known to be problematic for charge transfer states. The static DFT energies evaluated on the relax...
Electronically excited states characterized by intramolecular charge transfer play an essential role...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
Different ways to extract properties of excited states from time-dependent density functional theory...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
Abstract: Time-dependent density functional theory (TDDFT) is a powerful tool allowing for accurate ...
The density functional based tight binding method (DFTB) is an approximation of Kohn-Sham (KS) DFT w...
TD-DFT based methodology for calculating energy gradients with respect to the position of nuclea of ...
This paper presents an evaluation of the performance of time-dependent density-functional response t...
Electronically excited states characterized by intramolecular charge transfer play an essential role...
Electronically excited states characterized by intramolecular charge transfer play an essential role...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
Different ways to extract properties of excited states from time-dependent density functional theory...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
We compare different response schemes for coupling continuum solvation models to time-dependent dens...
Abstract: Time-dependent density functional theory (TDDFT) is a powerful tool allowing for accurate ...
The density functional based tight binding method (DFTB) is an approximation of Kohn-Sham (KS) DFT w...
TD-DFT based methodology for calculating energy gradients with respect to the position of nuclea of ...
This paper presents an evaluation of the performance of time-dependent density-functional response t...
Electronically excited states characterized by intramolecular charge transfer play an essential role...
Electronically excited states characterized by intramolecular charge transfer play an essential role...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...