To understand how core ionization and subsequent Auger decay lead to bond breaking in large systems, we simulate the wave packet dynamics of electrons in the hydrogenated diamond nanoparticle C_(197)H_(112). We find that surface core ionizations cause emission of carbon fragments and protons through a direct Auger mechanism, whereas deeper core ionizations cause hydrides to be emitted from the surface via remote heating, consistent with results from photon-stimulated desorption experiments [Hoffman A, Laikhtman A, (2006) J Phys Condens Mater 18:S1517–S1546]. This demonstrates that it is feasible to study the chemistry of highly excited large-scale systems using simulation and analysis tools comparable in simplicity to those used for classic...
Non-local analogues of Auger decay are increasingly recognized as important relaxation processes in ...
An understanding of dynamical properties of matter is often essential to developing a deeper underst...
Recently, a new family of autoionization processes has been identified in aqueous phases. The proces...
Highly excited heterogeneous complex materials are essential elements of important processes, rangin...
In this paper we present a detailed and unified theoretical treatment of secondary electron cascades...
Because of the high intensity, X-ray free electron lasers allow one to create and probe double core ...
The high intensity of free electron lasers opens up the possibility to perform single-shot molecule ...
Auger decay after photoexcitation or photoemission of an electron from a deep inner shell in the har...
In this thesis, we investigate the formation of atomic and molecular states with mul- tiple core ele...
Core excitation of molecules by soft x-rays creates core holes with lifetimes of a few femtoseconds,...
The energy dissipation and femtosecond dynamics due to fast heavy ions in matter is critically revi...
An energy shift and a change of the line shape of the carbon core-valence-valence Auger spectra are ...
Studying how small quantum systems, like molecules and clusters, interact with X-rays is crucial to ...
Because of the high intensity, X-ray free electron lasers allow one to create and probe double core ...
Quantum confinement in nanoscale materials allows Auger-type electron–hole energy exchange. We show ...
Non-local analogues of Auger decay are increasingly recognized as important relaxation processes in ...
An understanding of dynamical properties of matter is often essential to developing a deeper underst...
Recently, a new family of autoionization processes has been identified in aqueous phases. The proces...
Highly excited heterogeneous complex materials are essential elements of important processes, rangin...
In this paper we present a detailed and unified theoretical treatment of secondary electron cascades...
Because of the high intensity, X-ray free electron lasers allow one to create and probe double core ...
The high intensity of free electron lasers opens up the possibility to perform single-shot molecule ...
Auger decay after photoexcitation or photoemission of an electron from a deep inner shell in the har...
In this thesis, we investigate the formation of atomic and molecular states with mul- tiple core ele...
Core excitation of molecules by soft x-rays creates core holes with lifetimes of a few femtoseconds,...
The energy dissipation and femtosecond dynamics due to fast heavy ions in matter is critically revi...
An energy shift and a change of the line shape of the carbon core-valence-valence Auger spectra are ...
Studying how small quantum systems, like molecules and clusters, interact with X-rays is crucial to ...
Because of the high intensity, X-ray free electron lasers allow one to create and probe double core ...
Quantum confinement in nanoscale materials allows Auger-type electron–hole energy exchange. We show ...
Non-local analogues of Auger decay are increasingly recognized as important relaxation processes in ...
An understanding of dynamical properties of matter is often essential to developing a deeper underst...
Recently, a new family of autoionization processes has been identified in aqueous phases. The proces...