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Short-range order for CuAu binary alloy: pseudopotential theory of the alloy revisited

An analysis of the electronic theory of short-range order based on the pseudopotential approximation has been carried out for the Cu--Au system. It is noticed that the theory in its simple form (i.e. based on a perfectly periodic lattice approximation) failed to predict the observed negative value o...

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Published in:Journal of physics. F, Metal physics Metal physics, 1988-01, Vol.18 (1), p.21-32
Main Authors: Khwaja, F A, Saif-ud-Din
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Language:English
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description An analysis of the electronic theory of short-range order based on the pseudopotential approximation has been carried out for the Cu--Au system. It is noticed that the theory in its simple form (i.e. based on a perfectly periodic lattice approximation) failed to predict the observed negative value of the order parameter for these alloys. The theoretical framework is re-examined in the light of static lattice distortions due to the difference in the sizes of the atoms for a solid solution of arbitrary concentration. The values of the ordering potential and order parameter are computed for Cu--50 at.% Au using different forms of the noble-metal model pseudopotentials. A comparison is made with experiments. It is concluded that the improved theoretical procedure yields at least qualitatively the observed negative values of the order parameter for this system. 25 ref.--AA
doi_str_mv 10.1088/0305-4608/18/1/005
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subjects Condensed matter: structure, mechanical and thermal properties
Cross-disciplinary physics: materials science
rheology
Crystalline state (including molecular motions in solids)
Crystallographic aspects of phase transformations
pressure effects
Exact sciences and technology
Materials science
Metals, semimetals and alloys
Phase diagrams and microstructures developed by solidification and solid-solid phase transformations
Physics
Specific materials
Structure of solids and liquids
crystallography
title Short-range order for CuAu binary alloy: pseudopotential theory of the alloy revisited
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