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Phys. Rev. B 64, 235111 (2001) [9 pages]

Numerical atomic orbitals for linear-scaling calculations

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Javier Junquera1, Óscar Paz1, Daniel Sánchez-Portal2,3, and Emilio Artacho4
1Departamento de Física de la Materia Condensada, C-III, Universidad Autónoma, 28049 Madrid, Spain
2Department of Physics and Materials Research Laboratory, University of Illinois, Urbana Illinois 61801
3Departamento de Física de Materiales and DIPC, Facultad de Química, UPV/EHU, Apdo. 1072 E-20080 San Sebastián, Spain
4Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, United Kingdom

Received 6 April 2001; published 28 November 2001

The performance of basis sets made of numerical atomic orbitals is explored in density-functional calculations of solids and molecules. With the aim of optimizing basis quality while maintaining strict localization of the orbitals, as needed for linear-scaling calculations, several schemes have been tried. The best performance is obtained for the basis sets generated according to a new scheme presented here, a flexibilization of previous proposals. Strict localization is maintained while ensuring the continuity of the basis-function derivative at the cutoff radius. The basis sets are tested versus converged plane-wave calculations on a significant variety of systems, including covalent, ionic, and metallic. Satisfactory convergence is obtained for reasonably small basis sizes, with a clear improvement over previous schemes. The transferability of the obtained basis sets is tested in several cases and it is found to be satisfactory as well.

© 2001 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.64.235111
DOI:
10.1103/PhysRevB.64.235111
PACS:
71.15.Ap, 71.15.Mb