boson and the and processes: A theoretical analysis
M. Viviani, E. Filandri, L. Girlanda, C. Gustavino, A. Kievsky, L. E. Marcucci, and R. Schiavilla
Phys. Rev. C 105, 014001 (2022) - Published 3 January, 2022
Electron scattering on nuclei from quantum Monte Carlo based approaches
Lorenzo Andreoli, Joseph Carlson, Alessandro Lovato, Saori Pastore, Noemi Rocco, and R. B. Wiringa
Phys. Rev. C 105, 014002 (2022) - Published 14 January, 2022
Response functions and inclusive cross sections for lepton-nucleus scattering provide a window to aspects of long- and short-range nuclear structure. The authors’ microscopic calculations of electron-nucleus scattering on H and He, using quantum Monte Carlo methods and realistic interactions, quantify the accuracy and range of validity of different factorization schemes and analyze the relevance of relativistic effects. The benchmarking of theoretical approaches to calculating electron-nucleus scattering will enhance experimental programs at major facilities such as Jefferson Lab.
Nonperturbative two-pion exchange contributions to the nucleon-nucleon interaction in covariant baryon chiral perturbation theory
Chun-Xuan Wang, Jun-Xu Lu, Yang Xiao, and Li-Sheng Geng
Phys. Rev. C 105, 014003 (2022) - Published 20 January, 2022
Bayesian parameter estimation in chiral effective field theory using the Hamiltonian Monte Carlo method
Isak Svensson, Andreas Ekström, and Christian Forssén
Phys. Rev. C 105, 014004 (2022) - Published 24 January, 2022
Bayesian predictions for nuclei using eigenvector continuation emulators
T. Djärv, A. Ekström, C. Forssén, and H. T. Johansson
Phys. Rev. C 105, 014005 (2022) - Published 26 January, 2022



