An effective time-dependent (TD) approach to compute vibrationally resolved optical spectra from first principles is presented for the computation of one-photon electronic spectra induced by either electric or magnetic transition dipoles or by their mutual interaction, namely absorption, emission, and circular dichroism. Particular care has been devoted to generality, modularity, and numerical stability including all the contributions that play a role at the harmonic level of approximation, namely Franck–Condon, Herzberg–Teller, and Dushinsky (i.e., mode mixing) effects. The implementation shares the same general framework of our previous time-independent (TI) model, thus allowing an effective integration between both approaches with the co...
We present a time-dependent mixed quantum/semiclassical approach to calculating linear absorption sp...
Our general framework for the simulation of vibrational signatures in electronic spectra has been ex...
We introduce FCclasses3, a code to carry out vibronic simulations of electronic spectra and nonradia...
The research project of Alberto Baiardi involves the development of a time-dependent method for the ...
We present a computational approach of general applicability to simulate the vibronic line shapes of...
We present a computational approach of general applicability to simulate the vibronic line shapes of...
In this thesis, we propose a general and effective approach to compute vibrationally-resolved electr...
The time-dependent theory of electronic spectroscopy provides an intuitive approach to understand an...
In this computational study, we illustrate a method for computing phosphorescence and circularly pol...
The efficient method for calculation of dynamical time-resolved vibronic spectra of polyatomic molec...
Abstract: Modern ab initio and multiscale methods enable the simulation of vibrational properties of...
Intervalence absorption spectra are calculated and interpreted by using the time-dependent theory of...
Interpretation of structural properties and dynamic behavior of molecules in solution is of fundamen...
Our general platform integrating time-independent and time-dependent evaluations of vibronic effects...
Efficient quantum dynamical and electronic structure approaches are presented to calculate resonance...
We present a time-dependent mixed quantum/semiclassical approach to calculating linear absorption sp...
Our general framework for the simulation of vibrational signatures in electronic spectra has been ex...
We introduce FCclasses3, a code to carry out vibronic simulations of electronic spectra and nonradia...
The research project of Alberto Baiardi involves the development of a time-dependent method for the ...
We present a computational approach of general applicability to simulate the vibronic line shapes of...
We present a computational approach of general applicability to simulate the vibronic line shapes of...
In this thesis, we propose a general and effective approach to compute vibrationally-resolved electr...
The time-dependent theory of electronic spectroscopy provides an intuitive approach to understand an...
In this computational study, we illustrate a method for computing phosphorescence and circularly pol...
The efficient method for calculation of dynamical time-resolved vibronic spectra of polyatomic molec...
Abstract: Modern ab initio and multiscale methods enable the simulation of vibrational properties of...
Intervalence absorption spectra are calculated and interpreted by using the time-dependent theory of...
Interpretation of structural properties and dynamic behavior of molecules in solution is of fundamen...
Our general platform integrating time-independent and time-dependent evaluations of vibronic effects...
Efficient quantum dynamical and electronic structure approaches are presented to calculate resonance...
We present a time-dependent mixed quantum/semiclassical approach to calculating linear absorption sp...
Our general framework for the simulation of vibrational signatures in electronic spectra has been ex...
We introduce FCclasses3, a code to carry out vibronic simulations of electronic spectra and nonradia...