The SIESTA method forab initioorder-Nmaterials simulation
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- 8 March 2002
- journal article
- research article
- Published by IOP Publishing in Journal of Physics: Condensed Matter
- Vol. 14 (11) , 2745-2779
- https://doi.org/10.1088/0953-8984/14/11/302
Abstract
We have developed and implemented a selfconsistent density functional method using standard norm-conserving pseudopotentials and a flexible, numerical linear combination of atomic orbitals basis set, which includes multiple-zeta and polarization orbitals. Exchange and correlation are treated with the local spin density or generalized gradient approximations. The basis functions and the electron density are projected on a real-space grid, in order to calculate the Hartree and exchange-correlation potentials and matrix elements, with a number of operations that scales linearly with the size of the system. We use a modified energy functional, whose minimization produces orthogonal wavefunctions and the same energy and density as the Kohn-Sham energy functional, without the need for an explicit orthogonalization. Additionally, using localized Wannier-like electron wavefunctions allows the computation time and memory required to minimize the energy to also scale linearly with the size of the system. Forces and stresses are also calculated efficiently and accurately, thus allowing structural relaxation and molecular dynamics simulations.All Related Versions
This publication has 60 references indexed in Scilit:
- Linear scaling electronic structure methodsReviews of Modern Physics, 1999
- Order-N tight-binding methods for electronic-structure and molecular dynamicsComputational Materials Science, 1998
- Tight-binding modelling of materialsReports on Progress in Physics, 1997
- Self-consistent order-density-functional calculations for very large systemsPhysical Review B, 1996
- Self-consistent first-principles technique with linear scalingPhysical Review B, 1995
- Fast Algorithms for Classical PhysicsScience, 1994
- Unconstrained minimization approach for electronic computations that scales linearly with system sizePhysical Review B, 1993
- Iterative minimization techniques forab initiototal-energy calculations: molecular dynamics and conjugate gradientsReviews of Modern Physics, 1992
- Ab initiomulticenter tight-binding model for molecular-dynamics simulations and other applications in covalent systemsPhysical Review B, 1989
- Unified Approach for Molecular Dynamics and Density-Functional TheoryPhysical Review Letters, 1985