Modelling the inelastic scattering of electrons in water is fundamental, given their crucial role in biological damage. In Monte Carlo track-structure (MC-TS) codes used to assess biological damage, the energy loss function (ELF), from which cross sections are extracted, is derived from different semi-empirical optical models. Only recently have first ab initio results for the ELF and cross sections in water become available. For benchmarking purpose, in this work, we present ab initio linear-response time-dependent density functional theory calculations of the ELF of liquid water. We calculated the inelastic scattering cross sections, inelastic mean free paths, and electronic stopping power and compared our results with recent calculations...
This paper reports on Monte Carlo simulations of electrons in liquid water using a set of electron c...
International audienceAbstract: In this work we study theoretically the single ionization of liquid ...
We study, from first principles, structural, electronic, and bonding properties of liquid water. Our...
Modelling the inelastic scattering of electrons in water is fundamental, given their crucial role in...
Modeling the inelastic scattering of electrons in water is fundamental, given their crucial role in ...
Modelling the inelastic scattering of electrons in water is fundamental, given their crucial role in...
présenté par Z. Francis, transparents, résumé, pas de proceedingsTrack structure calculations of cha...
In this work we devise a theoretical and computational method to compute the elastic scattering of e...
Low-energy electrons play a prominent role in radiation therapy and biology as they are the largest ...
The availability of accurate mean free paths for slow electrons (<50 eV) in water is central to the ...
[[abstract]]©2007 Elsevier - A study of inelastic interactions of low-energy electrons with biologic...
A complete set of electrons scattering cross sections by water molecules over a broad energy range, ...
Purpose: We provide a short overview of optical-data models for the description of inelastic scatter...
Elastic integral and differential cross sections (DCS) for electron scattering from H2O calculated w...
Detailed Monte Carlo calculations are presented of proton and alpha-particle tracks in liquid water....
This paper reports on Monte Carlo simulations of electrons in liquid water using a set of electron c...
International audienceAbstract: In this work we study theoretically the single ionization of liquid ...
We study, from first principles, structural, electronic, and bonding properties of liquid water. Our...
Modelling the inelastic scattering of electrons in water is fundamental, given their crucial role in...
Modeling the inelastic scattering of electrons in water is fundamental, given their crucial role in ...
Modelling the inelastic scattering of electrons in water is fundamental, given their crucial role in...
présenté par Z. Francis, transparents, résumé, pas de proceedingsTrack structure calculations of cha...
In this work we devise a theoretical and computational method to compute the elastic scattering of e...
Low-energy electrons play a prominent role in radiation therapy and biology as they are the largest ...
The availability of accurate mean free paths for slow electrons (<50 eV) in water is central to the ...
[[abstract]]©2007 Elsevier - A study of inelastic interactions of low-energy electrons with biologic...
A complete set of electrons scattering cross sections by water molecules over a broad energy range, ...
Purpose: We provide a short overview of optical-data models for the description of inelastic scatter...
Elastic integral and differential cross sections (DCS) for electron scattering from H2O calculated w...
Detailed Monte Carlo calculations are presented of proton and alpha-particle tracks in liquid water....
This paper reports on Monte Carlo simulations of electrons in liquid water using a set of electron c...
International audienceAbstract: In this work we study theoretically the single ionization of liquid ...
We study, from first principles, structural, electronic, and bonding properties of liquid water. Our...