The analysis of photoelectron spectra is usually facilitated by quantum mechanical simulations. Because of the recent improvement of experimental techniques, the resolution of experimental spectra is rapidly increasing, and the inclusion of vibrational effects is usually mandatory to obtain a reliable reproduction of the spectra. With the aim of defining a robust computational protocol, a general time-independent formulation to compute different kinds of vibrationally resolved electronic spectra has been generalized to also support photoelectron spectroscopy. The electronic structure data underlying the simulation are computed using different electron propagator approaches. In addition to the more standard approaches, a new and robust imple...
Photoionization cross sections are among those fundamental quantities of nature which provide direct...
Photoionization studies may be subdivided into two fields of interest, structure and dynamics. The f...
Quantitative interpretation of electron spectra requires a thorough understanding of the surface sen...
The analysis of photoelectron spectra is usually facilitated by quantum mechanical simulations. Beca...
Photoelectron spectroscopy (PES) is a technique that uses photons in the energy range above a molecu...
Two accurate and computationally efficient electron-propagator (EP) methods for calculating the vale...
A methodology implemented to compute photoionization cross sections beyond the electric dipole appro...
Ab initio electron propagator methods are efficient and accurate means of calculating vertical elect...
X ray photoelectron spectra provide a wealth of information on the electronic structure. The extract...
A method is outlined for the calculation of photoionization cross sections representing the initial ...
A theoretical method involving the plane‐wave approximation and the use of semiempirical LCAO‐SCF‐MO...
We present an extension of the time-dependent configuration-interaction singles (TDCIS) method to th...
A theoretical simulation of the photoelectron spectrum for the ground state of methoxy radical is re...
The calculation of electron ionisation energies is a key component for the simulation of photoelectr...
Photoelectron spectroscopy (PES) provides valuable information on the ionization energies of atoms a...
Photoionization cross sections are among those fundamental quantities of nature which provide direct...
Photoionization studies may be subdivided into two fields of interest, structure and dynamics. The f...
Quantitative interpretation of electron spectra requires a thorough understanding of the surface sen...
The analysis of photoelectron spectra is usually facilitated by quantum mechanical simulations. Beca...
Photoelectron spectroscopy (PES) is a technique that uses photons in the energy range above a molecu...
Two accurate and computationally efficient electron-propagator (EP) methods for calculating the vale...
A methodology implemented to compute photoionization cross sections beyond the electric dipole appro...
Ab initio electron propagator methods are efficient and accurate means of calculating vertical elect...
X ray photoelectron spectra provide a wealth of information on the electronic structure. The extract...
A method is outlined for the calculation of photoionization cross sections representing the initial ...
A theoretical method involving the plane‐wave approximation and the use of semiempirical LCAO‐SCF‐MO...
We present an extension of the time-dependent configuration-interaction singles (TDCIS) method to th...
A theoretical simulation of the photoelectron spectrum for the ground state of methoxy radical is re...
The calculation of electron ionisation energies is a key component for the simulation of photoelectr...
Photoelectron spectroscopy (PES) provides valuable information on the ionization energies of atoms a...
Photoionization cross sections are among those fundamental quantities of nature which provide direct...
Photoionization studies may be subdivided into two fields of interest, structure and dynamics. The f...
Quantitative interpretation of electron spectra requires a thorough understanding of the surface sen...