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The reaction of atomic oxygen with several atmospheric ions

John A. Rutherford, D. A. Vroom

Open publisher page 61 citations

Abstract

Cross sections for reactions of atomic oxygen with the ions H+, O+,N+,N2+, O−, and O2− have been measured. The ion energies range from 1 to 500 eV. For all ions, the charge transfer processes have been considered. In addition, for N2+ the ion-molecule reaction leading to production of NO+ has been studied. For the charge transfer reactions in which no accidentally resonant pathway exists, cross sections less than 10−17 cm2 at 1 eV were measured. Where accidental resonance occurs, cross sections larger than 10−16 cm2 at 1 eV were found. For N+, both the ground and excited states of the ion were used in the measurements. The method used to form the atomic oxygen beam is discussed.

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What this paper is about

Cross sections for reactions of atomic oxygen with the ions H+, O+,N+,N2+, O−, and O2− have been measured. The ion energies range from 1 to 500 eV. For all ions, the charge transfer processes have been considered. In addition, for N2+ the ion-molecule reaction leading to production of NO+ has been studied. For the charge transfer reactions in which no accidentally resonant pathway exists, cross sections less than 10−17 cm2 at 1 eV were measured. Where accidental resonance occurs, cross sections larger than 10−16 cm2 at 1 eV were found. For N+, both the ground and excited states of the ion were used in the measurements. The method used to form the atomic oxygen beam is discussed.

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Available abstract

Cross sections for reactions of atomic oxygen with the ions H+, O+,N+,N2+, O−, and O2− have been measured. The ion energies range from 1 to 500 eV. For all ions, the charge transfer processes have been considered. In addition, for N2+ the ion-molecule reaction leading to production of NO+ has been studied. For the charge transfer reactions in which no accidentally resonant pathway exists, cross sections less than 10−17 cm2 at 1 eV were measured. Where accidental resonance occurs, cross sections larger than 10−16 cm2 at 1 eV were found. For N+, both the ground and excited states of the ion were used in the measurements. The method used to form the atomic oxygen beam is discussed.

Key concepts: Ion, Atomic physics, Atomic oxygen, Range (aeronautics), Excited state, Oxygen, Chemistry, Resonance (particle physics)

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