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arXiv:1802.08932·v1·Nuclear Theory

Auxiliary field diffusion Monte Carlo calculations of light and medium-mass nuclei with local chiral interactions

D. Lonardoni · S. Gandolfi · J. E. Lynn · C. Petrie · J. Carlson · K. E. Schmidt · A. Schwenk

Abstract

Quantum Monte Carlo methods have recently been employed to study properties of nuclei and infinite matter using local chiral effective field theory interactions. In this work, we present a detailed description of the auxiliary field diffusion Monte Carlo algorithm for nuclei in combination with local chiral two- and three-nucleon interactions up to next-to-next-to-leading order. We show results for the binding energy, charge radius, charge form factor, and Coulomb sum rule in nuclei with . Particular attention is devoted to the effect of different operator structures in the three-body force for different cutoffs. The outcomes suggest that local chiral interactions fit to few-body observables give a very good description of the ground-state properties of nuclei up to O, with the exception of one fit for the softer cutoff which predicts overbinding in larger nuclei.

Comments: 23 pages, 10 figures

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