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Phys. Rev. B 55, 13521–13527 (1997)

Full charge-density scheme with a kinetic-energy correction: Application to ground-state properties of the 4d metals

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L. Vitos and J. Kollár
Research Institute for Solid State Physics, H-1525 Budapest, P.O. Box 49, Hungary

H. L. Skriver
Center for Atomic-scale Materials Physics and Department of Physics, Technical University of Denmark, DK-2800 Lyngby, Denmark

We present a full charge-density technique to evaluate total energies from the output of self-consistent linear muffin-tin orbitals (LMTO) calculations in the atomic-sphere approximation (ASA). The Coulomb energy is calculated exactly from the complete, nonspherically symmetric charge density defined within nonoverlapping, space-filling Wigner-Seitz cells; the exchange-correlation energy is evaluated by means of the local-density approximation or the generalized gradient approximation applied to the complete charge-density; and the ASA kinetic energy is corrected for the nonspherically symmetric charge density by a gradient expansion. The technique retains most of the simplicity and the computational efficiency of the LMTO-ASA method, and calculations of atomic volumes and elastic constants of the 4d elements show that it has the accuracy of full-potential methods.

© 1997 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.55.13521
DOI:
10.1103/PhysRevB.55.13521
PACS:
71.15.La, 71.15.Nc, 71.20.Be