We describe a new approach based on semiclassical molecular dynamics that allows simulating infrared absorption or emission spectra of molecular systems with inclusion of anharmonic intensities. This is achieved from semiclassical power spectra by computing first the vibrational eigenfunctions as a linear combination of harmonic states, and then the oscillator strengths associated with the vibrational transitions. We test the approach against a 1D Morse potential and apply it to the water molecule with results in excellent agreement with discrete variable representation quantum benchmarks. The method does not require any grid calculations, and it is directly extendable to high dimensional systems. The usual exponential scaling of the basis ...
Computational spectroscopy techniques have become in the last years effective means to predict and c...
Semiclassical Initial Value Representaiton (SCIVR) molecular dynamics has been known since a long ti...
I will present some novel semiclassical methods designed for spectroscopic IR calculations of high d...
We present a novel approach to calculate molecular infrared (IR) spectra based on semiclassical (SC)...
The prediction of accurate vibrational frequencies is often necessary for the interpretation of expe...
Semiclassical (SC) vibrational spectroscopy has been applied successfully to several molecular syste...
Semiclassical molecular dynamics is a rigorous approximation to quantum dynamics obtained from the e...
I will present some novel theoretical methods based on semiclassical molecular dynamics and designed...
Semiclassical molecular dynamics is a rigorous approximation to quantum dynamics obtained from the e...
We extensively describe our recently established "divide-and-conquer" semiclassical method [M. Ceott...
Semiclassical molecular dynamics has long been known to be able to calculate accurately vibrational ...
Computational spectroscopy techniques have become in the last years effective means to predict and c...
The accurate prediction of vibrational spectra has become a very challenging task for theoretical me...
A new semiclassical "divide-and-conquer" method is presented with the aim of demonstrating that quan...
The main goal of this doctoral work was to develop theoretical advances of the semiclassical theory ...
Computational spectroscopy techniques have become in the last years effective means to predict and c...
Semiclassical Initial Value Representaiton (SCIVR) molecular dynamics has been known since a long ti...
I will present some novel semiclassical methods designed for spectroscopic IR calculations of high d...
We present a novel approach to calculate molecular infrared (IR) spectra based on semiclassical (SC)...
The prediction of accurate vibrational frequencies is often necessary for the interpretation of expe...
Semiclassical (SC) vibrational spectroscopy has been applied successfully to several molecular syste...
Semiclassical molecular dynamics is a rigorous approximation to quantum dynamics obtained from the e...
I will present some novel theoretical methods based on semiclassical molecular dynamics and designed...
Semiclassical molecular dynamics is a rigorous approximation to quantum dynamics obtained from the e...
We extensively describe our recently established "divide-and-conquer" semiclassical method [M. Ceott...
Semiclassical molecular dynamics has long been known to be able to calculate accurately vibrational ...
Computational spectroscopy techniques have become in the last years effective means to predict and c...
The accurate prediction of vibrational spectra has become a very challenging task for theoretical me...
A new semiclassical "divide-and-conquer" method is presented with the aim of demonstrating that quan...
The main goal of this doctoral work was to develop theoretical advances of the semiclassical theory ...
Computational spectroscopy techniques have become in the last years effective means to predict and c...
Semiclassical Initial Value Representaiton (SCIVR) molecular dynamics has been known since a long ti...
I will present some novel semiclassical methods designed for spectroscopic IR calculations of high d...