FORMATION ENERGY AND LATTICE-RELAXATION FOR POINT-DEFECTS IN LI AND AL

被引:48
作者
BENEDEK, R
YANG, LH
WOODWARD, C
MIN, BI
机构
[1] UNIVERSAL ENERGY SYST,DAYTON,OH 45432
[2] POHANG INST SCI & TECHNOL,DEPT PHYS,POHANG 680,SOUTH KOREA
来源
PHYSICAL REVIEW B | 1992年 / 45卷 / 06期
关键词
D O I
10.1103/PhysRevB.45.2607
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Calculations were performed for both a vacancy and an Al solute atom in bcc Li and for a vacancy in fcc Al. The purpose of this work was (i) to test optimization algorithms that allow a unified determination of ground-state electronic structure and lattice relaxation, and (ii) to compare calculated properties with experiment and with previous pair-potential simulations. 16- and 54-site supercells were employed in the Li-host calculations and a 32-site supercell was employed for the Al vacancy. The self-consistent Kohn-Sham orbitals, expanded in a plane-wave basis, were obtained using the modified steepest-descents algorithm of Williams and Soler and the band-by-band iteration method of Teter, Payne, and Allan. Electron-ion interactions were represented by generalized norm-conserving pseudopotentials cast in separable form. The relative performance of the two optimization algorithms is discussed. The equilibrium lattice relaxation was calculated by the Newton-Raphson method, with the Hessian matrix determined from numerical derivatives of the Hellman-Feynman forces. Calculated vacancy-formation energies are in excellent agreement with experiment.
引用
收藏
页码:2607 / 2612
页数:6
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