The SIESTA method for ab initio order-N materials simulation
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- Type
- article
- Published
- 2001-04-10
- Cited by
- 10,060
- References
- 83
- Access
- Open access
- OpenAlex
- https://openalex.org/W2141704677
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:28762846
Keywords
Linear combination of atomic orbitals, Basis set, Wannier function, Wave function, SIESTA (computer program)
References
- Fast Algorithms for Classical Physics
- Self-consistent first-principles technique with linear scaling.
- Density-Functional Theory
- Green's functions in quantum physics
- Computer Simulation Using Particles
- Improved SCF convergence acceleration
- Optimal meshes for integrals in real- and reciprocal-space unit cells.
- Designed nonlocal pseudopotentials for enhanced transferability
- Linear Scaling ab initio Calculations in Nanoscale Materials with SIESTA
- Generalized Gradient Approximation Made Simple.
- Analysis of separable potentials.
- The fast Hankel transform1
- Analytic Properties of Bloch Waves and Wannier Functions
- Simplified method for calculating the energy of weakly interacting fragments.
- Pseudopotentials that work: From H to Pu
- Spontaneous polarization as a Berry phase of the Hartree-Fock wave function: The case of KNbO 3
- Fully Unconstrained Approach to Noncollinear Magnetism: Application to Small Fe Clusters
- Self-consistent order-N density-functional calculations for very large systems.
- Linear system-size scaling methods for electronic-structure calculations.
- Total-energy global optimizations using nonorthogonal localized orbitals.
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- Distribution patterns and controllable transport of water inside and outside charged single-walled carbon nanotubes.
- Direct observation of electron dynamics in the attosecond domain
- The diversity of electron-transport behaviors of molecular junctions: correlation with the electron-transport pathway.
- Computational studies of phosphate clusters and bioglasses
- Electronic transport in natively oxidized silicon nanowires.
- Atomistic mechanism of charge separation upon photoexcitation at the dye-semiconductor interface for photovoltaic applications.
- Simulating functional magnetic materials on supercomputers
- Electron transport in SiGe alloy nanowires in the ballistic regime from first-principles.
- Family of carboxylate- and nitrate-diphenoxo triply bridged dinuclear Ni(II)Ln(III) complexes (Ln = Eu, Gd, Tb, Ho, Er, Y): synthesis, experimental and theoretical magneto-structural studies, and single-molecule magnet behavior.
- Bipolar magnetic semiconductors: a new class of spintronics materials.
- A charge-orbital balance picture of doping in colloidal quantum dot solids.
- Thermal stability and ordering study of long- and short-alkyl chain phosphonic acid multilayers.
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- The transport properties and new device design: the case of 6,6,12-graphyne nanoribbons.
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- Analytic projection from plane‐wave and PAW wavefunctions and application to chemical‐bonding analysis in solids
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