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- W2073595466 abstract "The transmission coefficient of very low energy electrons ( ⩽ 10 eV) normally incident on (111) epitaxial films of Cu and Ag on W(110) is modulated by interference between scattering from the vacuum/metal and metal/metal interfaces. Comparison with calculations of free-electron scattering from a one-dimensional potential model, in which grading of the metal/metal interface is represented by a smoothing of the potential step, indicates that this interface is abrupt within approximately one layer spacing. We obtain a value of 11.0 (8.0) ± 1.0 eV for the inner potential of Cu (Ag) and mean free path lengths of 39 ± 8 Å at an energy of 7.0 eV relative to the Fermi energy and 29 ± 11 Å at 9.0 eV for Cu, and 25 ± 10 Å at 7.5 eV for Ag. Work function values are obtained by the field emission retarding potential technique. We investigate the effects of the surface potential barrier, inelastic scattering and surface roughness, and evaluate the validity of the one-dimensional model presented." @default.
- W2073595466 created "2016-06-24" @default.
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- W2073595466 date "1983-04-01" @default.
- W2073595466 modified "2023-10-09" @default.
- W2073595466 title "Quantum size effect in electron transmission through Cu and Ag films on W(110)" @default.
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- W2073595466 doi "https://doi.org/10.1016/0039-6028(83)90413-2" @default.
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