Improved trial wave functions in quantum Monte Carlo: Application to acetylene and its dissociation fragments

Citation
Rn. Barnett et al., Improved trial wave functions in quantum Monte Carlo: Application to acetylene and its dissociation fragments, J CHEM PHYS, 114(5), 2001, pp. 2013-2021
Citations number
42
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF CHEMICAL PHYSICS
ISSN journal
00219606 → ACNP
Volume
114
Issue
5
Year of publication
2001
Pages
2013 - 2021
Database
ISI
SICI code
0021-9606(20010201)114:5<2013:ITWFIQ>2.0.ZU;2-F
Abstract
Recent quantum Monte Carlo (QMC) studies of electronic structure have consi dered various trial function enhancements directed at improved fixed-node e nergies. In this study we investigate complete active space self-consistent field (CASSCF) trial functions in the diffusion Monte Carlo (DMC) method. We study longer CASSCF expansions than typically used in QMC studies and op timize correlation function parameters, basis function coefficients, and co nfiguration state function mixing coefficients. To perform a stable, effici ent wavefunction optimization, sample points are analytically obtained from an integrable probability density function or a Monte Carlo walk guided by a positive definite function. The approach is applied to acetylene and its dissociation fragments (C, CH, C-2, C2H, C2H2). For these systems 70%-90% of the correlation energy is recovered with variational MC and 91%-98% with DMC. (C) 2001 American Institute of Physics.