We investigate approaches for the calculation of (resonance) Raman spectra in a real-time time-dependent density functional theory (RT-TDDFT) framework. Several short time approximations to the Kramers, Heisenberg, and Dirac polarizability tensor are examined with regard to the calculation of resonance Raman spectra: One relies on a Placzek type expansion of the electronic polarizability and the other one relies on the excited state gradient method. The first one is shown to be in agreement with an approach based on perturbation theory in the case of a weak δ-pulse perturbation. The latter is newly applied in a real time propagation framework, enabled by the use of Padé approximants to the Fourier transform which allow for a sufficient reso...
A parallel implementation of analytical time-dependent density functional theory gradients is presen...
This is an unofficial translation of an article that appeared in an ACS publication. ACS has not end...
A time-dependent quantum mechanical (TDQM) method of wavepacket propagation in computing resonance R...
We investigate approaches for the calculation of (resonance) Raman spectra in a real-time time-depen...
We present a novel approach for the calculation of vibrational (resonance) Raman optical activity (R...
Real-time time-dependent density functional theory (RT-TDDFT) and ab initio molecular dynamics (AIMD...
We present a new formulation of the time-dependent theory of Resonance-Raman spectroscopy (TD-RR). P...
Resonance Raman spectroscopy has long been established as one of the most sensitive techniques for d...
Efficient quantum dynamical and electronic structure approaches are presented to calculate resonance...
We present an implementation of a time-dependent density functional theory (TD-DFT) linear response ...
We describe the calculation of Raman optical activity (ROA) tensors from density functional perturba...
Resonance Raman (RR) spectroscopy is normally used to study the excited state structure and dynamics...
Resonance Raman spectroscopy (RRS) is a promising technique for investigating samples with low conce...
O presente trabalho aborda o desenvolvimento de metodologias para o cálculo das intensidades absolut...
In this paper we present two computational strategies to simulate resonance Raman spectra of sol- va...
A parallel implementation of analytical time-dependent density functional theory gradients is presen...
This is an unofficial translation of an article that appeared in an ACS publication. ACS has not end...
A time-dependent quantum mechanical (TDQM) method of wavepacket propagation in computing resonance R...
We investigate approaches for the calculation of (resonance) Raman spectra in a real-time time-depen...
We present a novel approach for the calculation of vibrational (resonance) Raman optical activity (R...
Real-time time-dependent density functional theory (RT-TDDFT) and ab initio molecular dynamics (AIMD...
We present a new formulation of the time-dependent theory of Resonance-Raman spectroscopy (TD-RR). P...
Resonance Raman spectroscopy has long been established as one of the most sensitive techniques for d...
Efficient quantum dynamical and electronic structure approaches are presented to calculate resonance...
We present an implementation of a time-dependent density functional theory (TD-DFT) linear response ...
We describe the calculation of Raman optical activity (ROA) tensors from density functional perturba...
Resonance Raman (RR) spectroscopy is normally used to study the excited state structure and dynamics...
Resonance Raman spectroscopy (RRS) is a promising technique for investigating samples with low conce...
O presente trabalho aborda o desenvolvimento de metodologias para o cálculo das intensidades absolut...
In this paper we present two computational strategies to simulate resonance Raman spectra of sol- va...
A parallel implementation of analytical time-dependent density functional theory gradients is presen...
This is an unofficial translation of an article that appeared in an ACS publication. ACS has not end...
A time-dependent quantum mechanical (TDQM) method of wavepacket propagation in computing resonance R...