We introduce FCclasses3, a code to carry out vibronic simulations of electronic spectra and nonradiative rates, based on the harmonic approximation. Key new features are: implementation of the full family of vertical and adiabatic harmonic models, vibrational analysis in curvilinear coordinates, extension to several electronic spectroscopies and implementation of time-dependent approaches. The use of curvilinear valence internal coordinates allows the adoption of quadratic model potential energy surfaces (PES) of the initial and final states expanded at arbitrary configurations. Moreover, the implementation of suitable projectors provides a robust framework for defining reduced-dimensionality models by sorting flexible coordinates out of th...
With this work, we present a protocol for the parameterization of a Linear Vibronic Coupling (LVC) H...
Abstract: Modern ab initio and multiscale methods enable the simulation of vibrational properties of...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...
In this thesis, we propose a general and effective approach to compute vibrationally-resolved electr...
Our general platform integrating time-independent and time-dependent evaluations of vibronic effects...
Our general framework for the simulation of vibrational signatures in electronic spectra has been ex...
We show how linear vibronic spectra in molecular systems can be simulated efficiently using first-pr...
For the rational design of new fluorophores, reliable predictions of fluorescence quantum yields fro...
Theoretical spectroscopy is an important field of chemistry that can help extract useful information...
Nonadiabatic dynamical processes are ubiquitous in chemistry and biology. Such events are directly c...
Vibrational spectroscopy is one of the most important experimental techniques for the characterizati...
We introduce iSPECTRON, a program that parses data from common quantum chemistry software (NWChem, O...
Our general framework for the simulation of vibrational signatures in electronic spectra has been ex...
In this thesis, we propose general, effective strategies for the simulation of vibrational spectra a...
Vibrational spectroscopy is a powerful technique to characterize the near-equilibrium dynamics of mo...
With this work, we present a protocol for the parameterization of a Linear Vibronic Coupling (LVC) H...
Abstract: Modern ab initio and multiscale methods enable the simulation of vibrational properties of...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...
In this thesis, we propose a general and effective approach to compute vibrationally-resolved electr...
Our general platform integrating time-independent and time-dependent evaluations of vibronic effects...
Our general framework for the simulation of vibrational signatures in electronic spectra has been ex...
We show how linear vibronic spectra in molecular systems can be simulated efficiently using first-pr...
For the rational design of new fluorophores, reliable predictions of fluorescence quantum yields fro...
Theoretical spectroscopy is an important field of chemistry that can help extract useful information...
Nonadiabatic dynamical processes are ubiquitous in chemistry and biology. Such events are directly c...
Vibrational spectroscopy is one of the most important experimental techniques for the characterizati...
We introduce iSPECTRON, a program that parses data from common quantum chemistry software (NWChem, O...
Our general framework for the simulation of vibrational signatures in electronic spectra has been ex...
In this thesis, we propose general, effective strategies for the simulation of vibrational spectra a...
Vibrational spectroscopy is a powerful technique to characterize the near-equilibrium dynamics of mo...
With this work, we present a protocol for the parameterization of a Linear Vibronic Coupling (LVC) H...
Abstract: Modern ab initio and multiscale methods enable the simulation of vibrational properties of...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...