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- W9706064 abstract "K-shell x-ray production cross sections are reported for incident $^{4}mathrm{He}$ ions for elements with K-shell binding energies between 277 eV (C) and 1487 eV (Al). The data are compared with the first-order Born approximation (plane-wave Born approximation for direct ionization and Oppenheimer-Brinkman-Kramer approximation for electron capture) and to the energy loss and Coulomb deflection effects, perturbed stationary-state approximation with relativistic correction (ECPSSR) theory. The energy of the helium ions ranged from 0.5 to 6.0 MeV for ${mathrm{He}}^{+}$ and 6.5 to 8.0 MeV for ${mathrm{He}}^{2+}$. The targets used in these measurements were $_{6}mathrm{C}$,${mathrm{}}_{8}$O, $_{9}mathrm{F}$, $_{11}mathrm{Na}$, $_{12}mathrm{Mg}$, and $_{13}mathrm{Al}$. Except for a systematic overprediction of the data at the lower projectile velocities, the ECPSSR theory is found to fit the data. The first-order Born theory is found to fit the data at higher energy, but greatly overpredicts the data at low energy." @default.
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- W9706064 date "1991-12-01" @default.
- W9706064 modified "2023-09-24" @default.
- W9706064 title "K-shell x-ray production inC6,O8,F9,Na11,Mg12, andAl13by 0.5–8.0-MeV helium ions" @default.
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- W9706064 doi "https://doi.org/10.1103/physreva.44.7252" @default.
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