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Radiative charge-exchange process in high-energy ion-atom collisions

C. M. Lee

Open publisher page 11 citations

Abstract

Based on the impulse approximation, the radiative charge-exchange process in high-energy ion-atom collisions is studied with an application to the collisions between protons and hydrogen atoms, as well as collisions between various uranium ions (${\mathrm{U}}^{+2}$, ${\mathrm{U}}^{+36}$, ${\mathrm{U}}^{+92}$) and various target atoms (N, Ne, Ar, Kr). The dependence on the incident-ion charge state and the target atom is discussed.

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What this paper is about

Based on the impulse approximation, the radiative charge-exchange process in high-energy ion-atom collisions is studied with an application to the collisions between protons and hydrogen atoms, as well as collisions between various uranium ions (${\mathrm{U}}^{+2}$, ${\mathrm{U}}^{+36}$, ${\mathrm{U}}^{+92}$) and various target atoms (N, Ne, Ar, Kr). The dependence on the incident-ion charge state and the target atom is discussed.

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OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Based on the impulse approximation, the radiative charge-exchange process in high-energy ion-atom collisions is studied with an application to the collisions between protons and hydrogen atoms, as well as collisions between various uranium ions (${\mathrm{U}}^{+2}$, ${\mathrm{U}}^{+36}$, ${\mathrm{U}}^{+92}$) and various target atoms (N, Ne, Ar, Kr). The dependence on the incident-ion charge state and the target atom is discussed.

Key concepts: Atomic physics, Charge exchange, Ion, Physics, Atom (system on chip), Radiative transfer, Charge (physics), Hydrogen atom

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