We present a method of modeling vibrational resonance Raman scattering (RRS) spectra of isolated and solvated systems with the inclusion of FranckCondon (FC) and HerzbergTeller (HT) effects and a full account for possible differences between the harmonic potential energy surfaces of the initial and resonant electronic states. It describes fundamentals, overtones, and combination bands and computes the RRS spectrum as a two-dimensional function of the incident and scattered frequencies. The theoretical foundations of the method are described and the differences with other currently available methodologies are outlined. Applications to the phenoxyl radical in the gas phase and indolinedimethine malononitrile (IDMN) in acetonitrile and c...
A time-dependent quantum mechanical (TDQM) method of wavepacket propagation in computing resonance R...
In this work, we extend the theoretical framework recently developed for the simulation of resonance...
This Fortran code calculates resonance Raman and absorption spectra using the time-dependent wavepac...
We present a method of modeling vibrational resonance Raman scattering (RRS) spectra of isolated and...
Efficient quantum dynamical and electronic structure approaches are presented to calculate resonance...
We present an effective time-independent implementation to model vibrational resonance Raman (RR) sp...
We present a new formulation of the time-dependent theory of Resonance-Raman spectroscopy (TD-RR). P...
We show that a recently developed time-independent approach for the calculation of vibrational reson...
In this work, we describe how Resonant Raman (RR) spectra can be predicted with good accuracy using ...
A study is presented on the resonance Raman (RR) spectrum based on fully anharmonic wave functions a...
Author Institution: Department of Physics, Spectroscopy Laboratory, Illinois Institute of Technology...
An overview of the basic analytical formulas used to explain the very large enhancements of the Rama...
A time-dependent quantum mechanical (TDQM) method of wavepacket propagation in computing resonance R...
In this paper we present two computational strategies to simulate resonance Raman spectra of sol- va...
We present the first computational treatment of the complete second-order vibrational perturbation t...
A time-dependent quantum mechanical (TDQM) method of wavepacket propagation in computing resonance R...
In this work, we extend the theoretical framework recently developed for the simulation of resonance...
This Fortran code calculates resonance Raman and absorption spectra using the time-dependent wavepac...
We present a method of modeling vibrational resonance Raman scattering (RRS) spectra of isolated and...
Efficient quantum dynamical and electronic structure approaches are presented to calculate resonance...
We present an effective time-independent implementation to model vibrational resonance Raman (RR) sp...
We present a new formulation of the time-dependent theory of Resonance-Raman spectroscopy (TD-RR). P...
We show that a recently developed time-independent approach for the calculation of vibrational reson...
In this work, we describe how Resonant Raman (RR) spectra can be predicted with good accuracy using ...
A study is presented on the resonance Raman (RR) spectrum based on fully anharmonic wave functions a...
Author Institution: Department of Physics, Spectroscopy Laboratory, Illinois Institute of Technology...
An overview of the basic analytical formulas used to explain the very large enhancements of the Rama...
A time-dependent quantum mechanical (TDQM) method of wavepacket propagation in computing resonance R...
In this paper we present two computational strategies to simulate resonance Raman spectra of sol- va...
We present the first computational treatment of the complete second-order vibrational perturbation t...
A time-dependent quantum mechanical (TDQM) method of wavepacket propagation in computing resonance R...
In this work, we extend the theoretical framework recently developed for the simulation of resonance...
This Fortran code calculates resonance Raman and absorption spectra using the time-dependent wavepac...