We describe the calculation of Raman optical activity (ROA) tensors from density functional perturbation theory, which has been implemented into the CP2K software package. Using the mixed Gaussian and plane waves method, ROA spectra are evaluated in the double-harmonic approximation. Moreover, an approach for the calculation of ROA spectra by means of density functional theory-based molecular dynamics is derived and used to obtain an ROA spectrum via time correlation functions, which paves the way for the calculation of ROA spectra taking into account anharmonicities and dynamic effects at ambient conditions
The integral equation formulation of the polarizable continuum model (IEFPCM) has been extended to t...
This book summarizes the highlights of our work on the bond polarizability approach to the intensity...
In this work, we extend the theoretical framework recently developed for the simulation of resonance...
We describe the calculation of Raman optical activity (ROA) tensors from density functional perturba...
We present density-functional theory calculations of vibrational Raman optical activity. Gauge-origi...
By looking back on the history of Raman Optical Activity (ROA), the present article shows that the s...
ABSTRACT: A computationally convenient and reasonably accurate scheme of computation of the Raman Op...
We present a novel approach for the calculation of vibrational (resonance) Raman optical activity (R...
We present our novel methodology for computing Raman optical activity (ROA) spectra of liquid system...
In the part I of this thesis, the theory of natural Raman optical activity (ROA) is summarized withi...
By looking back on the history of Raman Optical Activity (ROA), the present article shows that the s...
Following the concepts of atomic and bond polarizabilities, an orbital polarizability model has been...
Raman optical activity (ROA), which measures a small difference in the intensity of Raman scattering...
The integral equation formulation of the polarizable continuum model (IEFPCM) has been extended to t...
Raman optical activity (ROA) is an incisive probe of structural dynamics and its combination with tw...
The integral equation formulation of the polarizable continuum model (IEFPCM) has been extended to t...
This book summarizes the highlights of our work on the bond polarizability approach to the intensity...
In this work, we extend the theoretical framework recently developed for the simulation of resonance...
We describe the calculation of Raman optical activity (ROA) tensors from density functional perturba...
We present density-functional theory calculations of vibrational Raman optical activity. Gauge-origi...
By looking back on the history of Raman Optical Activity (ROA), the present article shows that the s...
ABSTRACT: A computationally convenient and reasonably accurate scheme of computation of the Raman Op...
We present a novel approach for the calculation of vibrational (resonance) Raman optical activity (R...
We present our novel methodology for computing Raman optical activity (ROA) spectra of liquid system...
In the part I of this thesis, the theory of natural Raman optical activity (ROA) is summarized withi...
By looking back on the history of Raman Optical Activity (ROA), the present article shows that the s...
Following the concepts of atomic and bond polarizabilities, an orbital polarizability model has been...
Raman optical activity (ROA), which measures a small difference in the intensity of Raman scattering...
The integral equation formulation of the polarizable continuum model (IEFPCM) has been extended to t...
Raman optical activity (ROA) is an incisive probe of structural dynamics and its combination with tw...
The integral equation formulation of the polarizable continuum model (IEFPCM) has been extended to t...
This book summarizes the highlights of our work on the bond polarizability approach to the intensity...
In this work, we extend the theoretical framework recently developed for the simulation of resonance...