MADELUNG ENERGY FOR RANDOM METALLIC ALLOYS IN THE COHERENT-POTENTIAL APPROXIMATION

被引:169
|
作者
KORZHAVYI, PA
RUBAN, AV
ABRIKOSOV, IA
SKRIVER, HL
机构
[1] TECH UNIV DENMARK, CTR ATOM SCALE MAT PHYS, DK-2800 LYNGBY, DENMARK
[2] TECH UNIV DENMARK, DEPT PHYS, DK-2800 LYNGBY, DENMARK
[3] UNIV UPPSALA, DEPT PHYS, CONDENSED MATTER THEORY GRP, S-75121 UPPSALA, SWEDEN
关键词
D O I
10.1103/PhysRevB.51.5773
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Within the conventional single-site coherent potential approximation (CPA) used to calculate thermodynamic properties of random alloys, the effect of charge transfer is neglected. We discuss a number of recent models based on the same mathematical form but with a different prefactor which allow one to include charge-transfer effects in the framework of the CPA. We show how the models work in actual calculations for selected metallic alloy systems, Al-Li, Li-Mg, and Ni-Pt, which exhibit charge transfer. We find that the so-called screened impurity model (=1), which is derived completely within the mean-field single-site approximation, leads to the best agreement with experimental lattice parameter and mixing energy data for Al-Li and Li-Mg alloys. However, for the Ni-Pt system exhibiting strong ordering tendency this model seems to overestimate the Madelung energy of the completely random alloy, and in this case the screened-CPA method (=1/2) gives more correct results. It is suggested that a comparison with the results obtained by the Connolly-Williams method may be used to determine an optimal value for depending on the alloy under consideration. © 1995 The American Physical Society.
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页码:5773 / 5780
页数:8
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