Published November 15, 2008 | Version public
Journal Article

An optimized initialization algorithm to ensure accuracy in quantum Monte Carlo calculations

  • 1. ROR icon California Institute of Technology

Abstract

Quantum Monte Carlo (QMC) calculations require the generation of random electronic configurations with respect to a desired probability density, usually the square of the magnitude of the wavefunction. In most cases, the Metropolis algorithm is used to generate a sequence of configurations in a Markov chain. This method has an inherent equilibration phase, during which the configurations are not representative of the desired density and must be discarded. If statistics are gathered before the walkers have equilibrated, contamination by nonequilibrated configurations can greatly reduce the accuracy of the results. Because separate Markov chains must be equilibrated for the walkers on each processor, the use of a long equilibration phase has a profoundly detrimental effect on the efficiency of large parallel calculations. The stratified atomic walker initialization (STRAW) shortens the equilibration phase of QMC calculations by generating statistically independent electronic configurations in regions of high probability density. This ensures the accuracy of calculations by avoiding contamination by nonequilibrated configurations. Shortening the length of the equilibration phase also results in significant improvements in the efficiency of parallel calculations, which reduces the total computational run time. For example, using STRAW rather than a standard initialization method in 512 processor calculations reduces the amount of time needed to calculate the energy expectation value of a trial function for a molecule of the energetic material RDX to within 0.01 au by 33%.

Additional Information

© 2008 Wiley. Received: 2 November 2007; Revised: 11 January 2008; Accepted: 8 February 2008. Published online 12 May 2008. Contract/grant sponsor: Department of Energy; contract/grant number: DE-FG02-97ER25308. Contract/grant sponsor: DOE ASC Project; contract/grant number: B523297. Contract/grant sponsor: ARO-DURIP; contract/grant number: W911NF-07-1-0226. Contract/grant sponsor: ONR-HE; contract/grant number: N00014-05-1-0778. Contract/grant sponsor: ARO-MURI; contract/grant number: W911NF-05-1-0345. Contract/grant sponsor: DARPA-PROM; contract/grant number: N00014-06-1-0938. Contract/grant sponsor: Fannie and John Hertz Foundation.

Additional details

Identifiers

Eprint ID
12218
Resolver ID
CaltechAUTHORS:FISjcc08

Funding

Department of Energy
DE-FG02-97ER25308
Department of Energy
B523297
Army Research Office
W911NF-07-1-0226
Office of Naval Research
N00014-05-1-0778
Army Research Office
W911NF-05-1-0345
Defense Advanced Research Projects Agency
N00014-06-1-0938
Fannie and John Hertz Foundation

Dates

Created
2008-10-29
Created from EPrint's datestamp field
Updated
2021-11-08
Created from EPrint's last_modified field