1968Physical ReviewOpen access

Classical Calculations of Charge-Transfer Cross Sections

J. D. Garcia, E. Gerjuoy, J. E. Welker

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Abstract

The utility of Gryzinski's classical procedure for estimating charge-transfer cross sections is examined. The essential content of the method is that charge transfer occurs whenever the energy transferred in a Coulomb collision between the incident ion and the transferring electron lies between specified limits. For protons incident on noble-gas and alkali atoms, it is found that the procedure in its present form is not as reliable for predicting charge-transfer cross sections as for ionization, though individual examples of remarkable agreement are found. Nevertheless, it remains possible that a more sophisticated classical approach can reasonably account for charge transfer.

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The utility of Gryzinski's classical procedure for estimating charge-transfer cross sections is examined. The essential content of the method is that charge transfer occurs whenever the energy transferred in a Coulomb collision between the incident ion and the transferring electron lies between specified limits. For protons incident on noble-gas and alkali atoms, it is found that the procedure in its present form is not as reliable for predicting charge-transfer cross sections as for ionization, though individual examples of remarkable agreement are found. Nevertheless, it remains possible that a more sophisticated classical approach can reasonably account for charge transfer.

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Available abstract

The utility of Gryzinski's classical procedure for estimating charge-transfer cross sections is examined. The essential content of the method is that charge transfer occurs whenever the energy transferred in a Coulomb collision between the incident ion and the transferring electron lies between specified limits. For protons incident on noble-gas and alkali atoms, it is found that the procedure in its present form is not as reliable for predicting charge-transfer cross sections as for ionization, though individual examples of remarkable agreement are found. Nevertheless, it remains possible that a more sophisticated classical approach can reasonably account for charge transfer.

Key concepts: Charge (physics), Atomic physics, Ionization, Transfer (computing), Coulomb, Physics, Ion, Electron

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