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Phys. Rev. B 69, 075101 (2004) [6 pages]

Real-space pseudopotential method for computing the electronic properties of periodic systems

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M. M. G. Alemany1, Manish Jain1, Leeor Kronik2, and James R. Chelikowsky1
1Department of Chemical Engineering and Materials Science, Minnesota Supercomputing Institute, University of Minnesota, Minneapolis, Minnesota 55455, USA
2Department of Materials and Interfaces, Weizmann Institute of Science, Rehovoth 76100, Israel

Received 7 August 2003; published 12 February 2004

We present a real-space method for electronic-structure calculations of periodic systems. Our method is based on the self-consistent solution of the Kohn-Sham equations on a uniform three-dimensional grid. A higher-order finite-difference method is combined with ab initio pseudopotentials. The kinetic energy operator, the nonlocal term of the ionic pseudopotential, and the Hartree and exchange-correlation potentials are set up directly on the real-space grid. The local contribution to the ionic pseudopotential is initially obtained in reciprocal space and is then transferred to the real-space grid by Fourier transform. Our method enjoys the main advantages of real-space grid techniques over traditional plane-wave representations for density-functional calculations, i.e., improved scaling and easier implementation on parallel computers. We illustrate the method by application to liquid silicon.

© 2004 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.69.075101
DOI:
10.1103/PhysRevB.69.075101
PACS:
61.20.Ja, 71.22.+i, 71.15.Pd