arXiv:1709.09143·v2·Nuclear Theory
Properties of nuclei up to using local chiral interactions
D. Lonardoni · J. Carlson · S. Gandolfi · J. E. Lynn · K. E. Schmidt · A. Schwenk · X. B. Wang
Abstract
We report accurate quantum Monte Carlo calculations of nuclei up to based on local chiral two- and three-nucleon interactions up to next-to-next-to-leading order. We examine the theoretical uncertainties associated with the chiral expansion and the cutoff in the theory, as well as the associated operator choices in the three-nucleon interactions. While in light nuclei the cutoff variation and systematic uncertainties are rather small, in O these can be significant for large coordinate-space cutoffs. Overall, we show that chiral interactions constructed to reproduce properties of very light systems and nucleon-nucleon scattering give an excellent description of binding energies, charge radii, and form factors for all these nuclei, including open-shell systems in and 12.
Comments: 6 pages, 4 figures