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- W2085677908 abstract "Atomic recoil events at and near {001} surfaces of Ni3Al due to elastic collisions between electrons and atoms have been simulated by molecular dynamics to obtain the sputtering threshold energy as a function of atomic species, recoil direction and atomic layer of the primary recoil atom. The minimum sputtering energy occurs for adatoms and is 3.5 and 4.5 eV for Al and Ni adatoms on the Ni–Al surface (denoted ‘M’), respectively, and 4.5 eV for both species on the pure Ni surface (denoted ‘N’). For atoms within the surface plane, the minimum sputtering energy is 6.0 eV for Al and Ni atoms in the M plane and for Ni atoms in the N surface. The sputtering threshold energy increases with increasing angle, θ, between the recoil direction and surface normal, and is almost independent of azimuthal angle, ϕ, if θ 60°, with a maximum at ϕ = 45° due to ⟨{110}⟩ close-packed atomic chains in the surface. The sputtering threshold energy increases significantly for subsurface recoil..." @default.
- W2085677908 created "2016-06-24" @default.
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- W2085677908 date "2005-06-01" @default.
- W2085677908 modified "2023-10-14" @default.
- W2085677908 title "Point-defect properties of, and sputtering events in, the {001} surfaces of Ni3Al. II. Sputtering events at and near surfaces" @default.
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- W2085677908 doi "https://doi.org/10.1080/14786430500036249" @default.
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