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A Helium-Surface Interaction Potential Of Bi2te3(111) From Ultrahigh-Resolution Spin-Echo Measurements

SURFACE SCIENCE(2018)

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Abstract
We have determined an atom-surface interaction potential for the He-Bi2Te3(111) system by analysing ultrahigh resolution measurements of selective adsorption resonances. The experimental measurements were obtained using He-3 spin-echo spectrometry. Following an initial free-particle model analysis, we use elastic close-coupling calculations to obtain a three-dimensional potential. The three-dimensional potential is then further refined based on the experimental data set, giving rise to an optimised potential which fully reproduces the experimental data. Based on this analysis, the He-Bi2Te3(111) interaction potential can be described by a corrugated Morse potential with a well depth D = (6.22 +/- 0.05) meV, a stiffness kappa = (0.92 +/- 0.01) angstrom(-1) and a surface electronic corrugation of (9.6 +/- 0.2)% of the lattice constant. The improved uncertainties of the atom-surface interaction potential should also enable the use in inelastic close-coupled calculations in order to eventually study the temperature dependence and the line width of selective adsorption resonances. (C) 2018 Elsevier B.V. All rights reserved.
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Key words
Bi2Te3,Topological insulator,Atom-surface interaction,Atom scattering,Bound states,Adsorption
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