Photoelectron spectroscopy is usually described by a simple equation that relates the binding energy of the photoemitted electron, E-binding, its kinetic energy, E-kinetic, the energy of the ionizing photon, E-photon, and the work function of the spectrometer, phi, E-binding = E-photon - E-kinetic - phi. Behind this equation there is an extremely rich physics, which we describe here using as an example a relatively simple conjugated molecule, namely coronene. The theoretical analysis of valence band and C1s core level photoemission spectra showed that multiple excitations play an important role in determining the intensities of the final spectrum. An explicit, time-evolving model is applied, which is able to count all possible photo-excitat...
Two-dimensional photoelectron spectroscopy has been used to supply process-specific labels to multip...
Highly excited molecular species are at play in the chemistry of interstellar media and are involved...
Understanding processes induced by XUV excitation of Polycyclic Aromatic Hydrocarbons (PAHs) is at t...
Photoelectron spectroscopy is usually described by a simple equation that relates the binding energy...
AbstractWe present a computational study on the angular-resolved photoemission spectra (ARPES) from ...
Assuming a delta pulse excitation, quantum wavepackets are propagated on the excited state manifold ...
We present a time-dependent density-functional method able to describe the photoelectron spectrum of...
Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous in the interstellar medium, and it is thought...
Title: Quantum mechanical study of the electron hoping processes of pig- ments from photosystems. Si...
Ultra-violet and visible light induced processes in small organic molecules play very important role...
The ultrafast photodissociation dynamics of 2-ethylpyrrole (2-EP) is simulated in a fully quantum ma...
We report the discovery of the formation of an electron Cooper pair approximately 40 eV above the do...
We have investigated the photoionization and photodissociation of free coronene cations C24H12+ upon...
International audienceSemiclassical methods to simulate both steady and time-resolved photoelectron ...
Two-dimensional photoelectron spectroscopy has been used to supply process-specific labels to multip...
Highly excited molecular species are at play in the chemistry of interstellar media and are involved...
Understanding processes induced by XUV excitation of Polycyclic Aromatic Hydrocarbons (PAHs) is at t...
Photoelectron spectroscopy is usually described by a simple equation that relates the binding energy...
AbstractWe present a computational study on the angular-resolved photoemission spectra (ARPES) from ...
Assuming a delta pulse excitation, quantum wavepackets are propagated on the excited state manifold ...
We present a time-dependent density-functional method able to describe the photoelectron spectrum of...
Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous in the interstellar medium, and it is thought...
Title: Quantum mechanical study of the electron hoping processes of pig- ments from photosystems. Si...
Ultra-violet and visible light induced processes in small organic molecules play very important role...
The ultrafast photodissociation dynamics of 2-ethylpyrrole (2-EP) is simulated in a fully quantum ma...
We report the discovery of the formation of an electron Cooper pair approximately 40 eV above the do...
We have investigated the photoionization and photodissociation of free coronene cations C24H12+ upon...
International audienceSemiclassical methods to simulate both steady and time-resolved photoelectron ...
Two-dimensional photoelectron spectroscopy has been used to supply process-specific labels to multip...
Highly excited molecular species are at play in the chemistry of interstellar media and are involved...
Understanding processes induced by XUV excitation of Polycyclic Aromatic Hydrocarbons (PAHs) is at t...