A Constrained Path Quantum Monte Carlo Method for Fermion Ground States
Condensed Matter
2016-08-31 v1
Abstract
We propose a new quantum Monte Carlo algorithm to compute fermion ground-state properties. The ground state is projected from an initial wavefunction by a branching random walk in an over-complete basis space of Slater determinants. By constraining the determinants according to a trial wavefunction , we remove the exponential decay of signal-to-noise ratio characteristic of the sign problem. The method is variational and is exact if is exact. We report results on the two-dimensional Hubbard model up to size , for various electron fillings and interaction strengths.
Cite
@article{arxiv.cond-mat/9503055,
title = {A Constrained Path Quantum Monte Carlo Method for Fermion Ground States},
author = {Shiwei Zhang and J. Carlson and J. E. Gubernatis},
journal= {arXiv preprint arXiv:cond-mat/9503055},
year = {2016}
}
Comments
uuencoded compressed postscript file. 5 pages with 1 figure. accepted by PRL.