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Energy loss in medium-energy ion scattering : a combined theoretical and experimental study of the model system Y on Si(111)

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Energy loss in medium-energy ion scattering : a combined theoretical and experimental study of the model system Y on Si(111)

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Título Energy loss in medium-energy ion scattering : a combined theoretical and experimental study of the model system Y on Si(111)
Autor Muñoz-Marques, M. A.
Parkinson, Gareth
Woodruff, D. P.
Silva Junior, Agenor Hentz da
Grande, Pedro Luis
Schwietz, Gregor
Wood, Tim J.
Bonet, Chris
Tear, Steve P.
Bailey, Paul
Noakes, Tim C. Q.
Abstract The energy-loss spectrum associated with scattering of 100 keV H+ ions from Y atoms on Si (111) has been investigated both experimentally and theoretically. Measurements were made from Y overlayers, and from the Si (111) (1X1) two-dimensional silicide phase formed by Y on this surface, in various scattering geometries and with different surface preparations. Theoretical simulations were conducted based on calculations of the energy loss experienced in specific ion trajectories through the surface, using coupled-channel calculations to describe inner-shell ionization and excitation as a function of impact parameter. The experimental results indicate that additional broadening contributions arise from surface inhomogeneity and roughness, but for near-normal incident and outgoing trajectories the theory and experiment agree quite well. The calculations show that, even for the ideal two-dimensional silicide phase in which the Y atoms lie just below the surface, significant energy loss arises from interaction of the ions with surrounding Si atoms, leading to a complete loss of intensity at zero energy loss.
Contido em Physical review. B, Condensed matter and materials physics. Woodbury. Vol. 72, no. 7 (Aug. 2005), 075415 10p.
Assunto Impacto ion-superfície
Itrio
Perda de energia de particulas
Retroespalhamento
Semicondutores elementares
Silicio 111
Origem Estrangeiro
Tipo Artigo de periódico
URI http://hdl.handle.net/10183/104304
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