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- W2041855530 abstract "At incident ion energies Ei significantly below and significantly above that of the electronic stopping-power maximum Em, major differences are to be found in the physics of nuclear and electronic collisions which give rise to the ion range distribution. In the present paper a Monte Carlo method is used to span the energy range between these low- and high-energy regimes. Good agreement is found with recent results on the parameters and shape of the distribution obtained from transport calculations at low energy and from a recently developed semi-analytical model at high energy. The changing character of the projected range distribution as a function of energy is discussed in terms of the statistics of nuclear collisions. The fwhm of the projected range distribution is found to be dominated by electronic straggling for incident energies above a few time Em, while as expected for significantly lower energies the fwhm arises predominantly from multiple nuclear collisions. The fwhm can also be increased significantly by charge-state fluctuations in the transitional region just above the stopping-power maximum. Quantitative predictions for the mean projected range, and the fwhm of the projected range distribution, are presented for the cases of 4He, 12C and 16O ions incident on A1 in the energy range 10 keV/u to 10 MeV/u." @default.
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- W2041855530 date "1983-03-01" @default.
- W2041855530 modified "2023-09-27" @default.
- W2041855530 title "Projected range distributions of low-, intermediate-, and high-energy ions" @default.
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- W2041855530 doi "https://doi.org/10.1016/0167-5087(83)90403-9" @default.
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