Abstract

We calculate double-differential cross sections for the impact ionization of He targets by 1.5-MeV ${\mathrm{H}}^{+}$ and 28.5-MeV ${\mathrm{F}}^{9+}$ ions using the distorted-wave strong-potential Born approximation. The theory is compared with the experimental electron spectrum. Both theory and experiment show the low-energy electron distribution, the electron capture to the continuum cusp, and the binary-encounter peak.

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