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- W2081559393 abstract "The basic features of a recently developed method for the study of axial blocking are outlined. For small depths the master equation is solved by the eigenvalue method for a depth-independent “dechanneling matrix” Q in a restricted transverse energy range. This is shown to be possible also in presence of energy loss effects, through a scaling transformation allowing for a factorizable energy dependence of Q and the inclusion of a source term describing the shift towards lower transverse energies due to energy loss. The results for 〈110〉 blocking of 2 MeV α-particles in Al for depths from 0.2 μm to 1 μm are in generally good agreement with those of a Monte Carlo simulation. The effects of deviations from statistical equilibrium and of the choice of the string potential are studied. The dependence of the results for large depths on electronic diffusion is shown." @default.
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- W2081559393 date "1986-03-01" @default.
- W2081559393 modified "2023-09-27" @default.
- W2081559393 title "Axial blocking dips from the master equation for transverse energy distribution" @default.
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- W2081559393 doi "https://doi.org/10.1016/0168-583x(86)90467-2" @default.
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