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- W2051310312 abstract "The technique of time-of-flight scattering and recoiling spectrometry (TOF-SARS) enables the direct determination of crystal surface periodicity by revealing the main crystallographic axes of the surface. This is achieved by monitoring the azimuthal anisotropy of scattered or recoiled neutral plus ion intensity in the appropriate scattering geometry. Using scattering in two different modes, i.e. a shadowing mode and a blocking mode, for the (1 × 2) and (1 × 3) phases of a reconstructed Pt{110} surface and using scattering and recoiling in the shadowing mode for a (1 × 1)-Ni{110} surface, it is demonstrated that the main crystallographic axes can be exposed directly from plots of scattering or recoiling intensity versus crystal azimuthal angle. The shadowing and blocking effects that are responsible for this anisotropy and their extreme sensitivity to appropriate angular conditions are discussed. A method for obtaining the periodicity information without sample rotation using position-sensitive detection is proposed." @default.
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- W2051310312 date "1991-06-01" @default.
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- W2051310312 title "Direct determination of crystal surface periodicity from scattering and recoiling azimuthal anisotropy" @default.
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- W2051310312 doi "https://doi.org/10.1016/0039-6028(91)90855-m" @default.
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