Role of Proton-Proton Interaction in the ( p+ ,H) Electron-Transfer Collision
Joseph C. Y. Chen, Paul J. Kramer
Abstract
Joseph C. Y. Chen, Paul J. Kramer
Abstract
The resonant (${p}^{+}$, H) electron-transfer cross section is calculated in the first-order Faddeev-Watson multiple-scattering approximation. The result shows that the cross section lies between the Brinkman-Kramers and Jackson-Schiff cross sections and approaches the Jackson-Schiff cross section in the high-energy limit. If the contribution coming from the on-shell Coulomb cuts is neglected, the cross section approaches the Brinkman-Kramers cross section asymptotically in the high-energy limit. Arguments are presented that the on-shell-cut contribution should be included in the calculation of the electron-transfer amplitude.
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The resonant (${p}^{+}$, H) electron-transfer cross section is calculated in the first-order Faddeev-Watson multiple-scattering approximation. The result shows that the cross section lies between the Brinkman-Kramers and Jackson-Schiff cross sections and approaches the Jackson-Schiff cross section in the high-energy limit. If the contribution coming from the on-shell Coulomb cuts is neglected, the cross section approaches the Brinkman-Kramers cross section asymptotically in the high-energy limit. Arguments are presented that the on-shell-cut contribution should be included in the calculation of the electron-transfer amplitude.
Key concepts: Physics, Cross section (physics), Limit (mathematics), Proton, Coulomb, Section (typography), Electron, Scattering