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An efficient and accurate perturbative correction to initiator full configuration interaction quantum Monte Carlo

Published 25 Apr 2018 in physics.chem-ph, cond-mat.str-el, and physics.comp-ph | (1804.09528v3)

Abstract: We present a perturbative correction within initiator full configuration interaction quantum Monte Carlo (i-FCIQMC). In the existing i-FCIQMC algorithm, a significant number of spawned walkers are discarded due to the initiator criteria. Here we show that these discarded walkers have a form that allows calculation of a second-order Epstein-Nesbet correction, that may be accumulated in a trivial and inexpensive manner, yet substantially improves i-FCIQMC results. The correction is applied to the Hubbard model, the uniform electron gas and molecular systems.

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