Quantum Monte Carlo simulations of solids
Top Cited Papers
Open Access
- 5 January 2001
- journal article
- research article
- Published by American Physical Society (APS) in Reviews of Modern Physics
- Vol. 73 (1) , 33-83
- https://doi.org/10.1103/revmodphys.73.33
Abstract
This article describes the variational and fixed-node diffusion quantum Monte Carlo methods and how they may be used to calculate the properties of many-electron systems. These stochastic wave-function-based approaches provide a very direct treatment of quantum many-body effects and serve as benchmarks against which other techniques may be compared. They complement the less demanding density-functional approach by providing more accurate results and a deeper understanding of the physics of electronic correlation in real materials. The algorithms are intrinsically parallel, and currently available high-performance computers allow applications to systems containing a thousand or more electrons. With these tools one can study complicated problems such as the properties of surfaces and defects, while including electron correlation effects with high precision. The authors provide a pedagogical overview of the techniques and describe a selection of applications to ground and excited states of solids and clusters.Keywords
This publication has 180 references indexed in Scilit:
- Shifted-contour auxiliary field Monte Carlo for ab initio electronic structure: Straddling the sign problemThe Journal of Chemical Physics, 1998
- Spin contamination in quantum Monte Carlo wave functionsThe Journal of Chemical Physics, 1998
- Electronic structure by quantum Monte Carlo: atoms, molecules and solidsComputer Physics Communications, 1996
- The boundary condition integration technique: results for the Hubbard model in 1D and 2DZeitschrift für Physik B Condensed Matter, 1992
- Fermion nodesJournal of Statistical Physics, 1991
- Computer simulation of the static and dynamic properties of a polymer chainMacromolecules, 1981
- Quantentheoretische Beitr ge zum Problem der aromatischen und unges ttigten Verbindungen. IIIThe European Physical Journal A, 1932
- Quanstentheoretische Beitr ge zum BenzolproblemThe European Physical Journal A, 1931
- Quantentheoretische Beitr ge zum BenzolproblemThe European Physical Journal A, 1931
- ber die Quantenmechanik der Elektronen in KristallgitternThe European Physical Journal A, 1929