Electromagnetic characteristics of physical and lattice nuclei
Johannes Kirscher, Ehoud Pazy, Jonathan Drachman, and Nir Barnea
Phys. Rev. C 96, 024001 (2017) - Published 1 August, 2017
Triton binding energy and neutron-deuteron scattering up to next-to-leading order in chiral effective field theory
Young-Ho Song, Rimantas Lazauskas, and U. van Kolck
Phys. Rev. C 96, 024002 (2017) - Published 2 August, 2017
Bayesian truncation errors in chiral effective field theory: Nucleon-nucleon observables
J. A. Melendez, S. Wesolowski, and R. J. Furnstahl
Phys. Rev. C 96, 024003 (2017) - Published 3 August, 2017
Chiral effective field theory (EFT) predictions are necessarily truncated at some order in the EFT expansion. Bayesian analysis has been proposed as a means to quantify the theoretical uncertainties that are induced by that truncation, in order to provide a robust statistical comparison with experiment. The authors apply a Bayesian model to an extended set of observables calculated for a class of EFT interactions, and demonstrate that a subset of these potentials are consistent with their statistical model for order-by-order convergence.
High-quality two-nucleon potentials up to fifth order of the chiral expansion
D. R. Entem, R. Machleidt, and Y. Nosyk
Phys. Rev. C 96, 024004 (2017) - Published 10 August, 2017

