Classical Approximation for Ionization by Proton Impact
- 5 January 1968
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 165 (1) , 66-71
- https://doi.org/10.1103/physrev.165.66
Abstract
Ionization of atoms by proton impact, as predicted by the classical binary-encounter approximation, is examined and compared with available experimental data on the noble-gas and alkali-metal atoms. The results indicate that these predictions agree with observation to within a factor of 2 or 3, and are as reliable as the comparable results for electron ionization. Comparisons are made between electron and proton ionization cross sections. The proton ionization curves all have a single maximum and are otherwise monotonic, in contrast to electron ionization, where the effects of atomic shell structure produce secondary maxima for some atoms. The effect of averaging over bound-state speed distributions is discussed, and is found to be much less important for protons than for electrons, except at very low proton energies. The need for experimental measurements at higher energies (∼10 MeV) is discussed.Keywords
This publication has 16 references indexed in Scilit:
- Correspondence Principle in Inelastic ScatteringPhysical Review B, 1967
- Reevaluation of X-Ray Atomic Energy LevelsReviews of Modern Physics, 1967
- Cross Section for Energy Transfer between Two Moving ParticlesPhysical Review B, 1966
- Calculation of Inelastic Electron—Molecule Collision Cross Sections by Classical MethodsThe Journal of Chemical Physics, 1965
- Two-Particle Collisions. II. Coulomb Collisions in the Laboratory System of CoordinatesPhysical Review B, 1965
- Two-Particle Collisions. I. General Relations for Collisions in the Laboratory SystemPhysical Review B, 1965
- Classical Theory of Atomic Collisions. I. Theory of Inelastic CollisionsPhysical Review B, 1965
- Classical Impulse Approximation for Inelastic Electron-Atom CollisionsPhysical Review B, 1964
- Ionization and Charge Transfer in Proton-Hydrogen Atom CollisionsPhysical Review B, 1960
- Classical Theory of Electronic and Ionic Inelastic CollisionsPhysical Review B, 1959