The Classical Trajectory Monte Carlo method is applied to treat proton collisions with N2, CO and CH4 at collision energies 25< E < 2.5 × 103 keV. The calculation employs model potentials to describe the interaction of the active electron with the molecular core. General good agreement with available experimental data is foun
We have conducted a quantum-mechanical analysis within the independent elec- tron model to investig...
All known data on the energy distribution of secondary electrons from collisions of protons with ato...
This document is the unedited Author’s version of a Submitted Work that was subsequently accepted fo...
In this work, we introduce a classical trajectory Monte Carlo (CTMC) methodology, specially conceive...
Cross sections differential in the scattering angle of the projectile are presented for electron cap...
The calculations of total cross sections of electron capture in collisions of Cq+ with H (1s) are re...
Existing data on the ionization of neutral atoms and molecules by proton impact are reviewed, and el...
In this work, we introduce a classical trajectory Monte Carlo (CTMC) methodology, specially conceive...
Abstract. Numerical evaluations of ion- hydrogen atom collision's ionization cross sections wit...
A model is presented which gives cross sections (differential in the ejected secondary electron ener...
We study numerically collisions between protons and H-2(+) molecular ions at intermediate impact ene...
The final publication is available at http://link.springer.com/article/10.1140/epjd/e2015-60106-8Add...
Two nonperturbative methods are applied to obtain total and singly differential (in the electron ene...
All known data on the energy distribution of secondary electrons from collisions of protons with ato...
We employ the independent event electron model in the framework of the classical trajectory Monte Ca...
We have conducted a quantum-mechanical analysis within the independent elec- tron model to investig...
All known data on the energy distribution of secondary electrons from collisions of protons with ato...
This document is the unedited Author’s version of a Submitted Work that was subsequently accepted fo...
In this work, we introduce a classical trajectory Monte Carlo (CTMC) methodology, specially conceive...
Cross sections differential in the scattering angle of the projectile are presented for electron cap...
The calculations of total cross sections of electron capture in collisions of Cq+ with H (1s) are re...
Existing data on the ionization of neutral atoms and molecules by proton impact are reviewed, and el...
In this work, we introduce a classical trajectory Monte Carlo (CTMC) methodology, specially conceive...
Abstract. Numerical evaluations of ion- hydrogen atom collision's ionization cross sections wit...
A model is presented which gives cross sections (differential in the ejected secondary electron ener...
We study numerically collisions between protons and H-2(+) molecular ions at intermediate impact ene...
The final publication is available at http://link.springer.com/article/10.1140/epjd/e2015-60106-8Add...
Two nonperturbative methods are applied to obtain total and singly differential (in the electron ene...
All known data on the energy distribution of secondary electrons from collisions of protons with ato...
We employ the independent event electron model in the framework of the classical trajectory Monte Ca...
We have conducted a quantum-mechanical analysis within the independent elec- tron model to investig...
All known data on the energy distribution of secondary electrons from collisions of protons with ato...
This document is the unedited Author’s version of a Submitted Work that was subsequently accepted fo...