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...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
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 ...
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...
Abstract: Time-dependent density functional theory (TDDFT) is a powerful tool allowing for accurate ...
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...
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...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
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 ...
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...
Abstract: Time-dependent density functional theory (TDDFT) is a powerful tool allowing for accurate ...
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...
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...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
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 ...