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- W1979001444 abstract "Monte Carlo simulation for 1–10 keV positron backscattering from semi-infinite aluminum with normal angle of incidence is reported. The elastic scattering cross sections have been obtained from the modified Rutherford differential cross section where the numerical coefficient in the atomic screening parameter is taken to be variable. To model inelastic scattering, we have investigated for the first time the effects of continuous slowing down through collisions with conduction electrons. Attention has also been paid to effects of changing the angle of incidence. Our simulated results and the available experimental data are found to be in reasonable agreement, and show that the energy dependence of the backscattered fractions can be fitted with a simple function: B(E)=0.0187997 ln E+0.102644. This suggests that both the transport model and the scattering cross sections used in the present work are reliable." @default.
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- W1979001444 date "1998-04-01" @default.
- W1979001444 modified "2023-10-06" @default.
- W1979001444 title "Backscattering of slow positrons from semi-infinite aluminum" @default.
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- W1979001444 doi "https://doi.org/10.1063/1.366583" @default.
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