2 citations · 2 across the 2 of their papers we have counts for
7 papers
Atomic nuclei from quantum Monte Carlo calculations with chiral EFT interactions
Stefano Gandolfi, Diego Lonardoni, Alessandro Lovato +1
Quantum Monte Carlo methods are powerful numerical tools to accurately solve the Schrödinger equation for nuclear systems, a necessary step to describe the structure and reactions…
Nuclear and neutron-star matter from local chiral interactions
D. Lonardoni, I. Tews, S. Gandolfi +1
We report a quantum Monte Carlo calculation of the equation of state of symmetric nuclear matter using local interactions derived from chiral effective field theory up to next-to-n…
Local chiral EFT potentials in nuclei and neutron matter: results and issues
Diego Lonardoni, Ingo Tews
In recent years, the combination of advanced quantum Monte Carlo (QMC) methods and local interactions derived from chiral effective field theory (EFT) has been shown to provide a v…
Ab initio short-range-correlation scaling factors from light to medium-mass nuclei
J. E. Lynn, D. Lonardoni, J. Carlson +4
High-energy scattering processes, such as deep inelastic scattering (DIS) and quasielastic (QE) scattering provide a wealth of information about the structure of atomic nuclei. The…
Comparing proton momentum distributions in and 3 nuclei via H H and He measurements
R. Cruz-Torres, S. Li, F. Hauenstein +125
We report the first measurement of the reaction cross-section ratios for Helium-3 (He), Tritium (H), and Deuterium (). The measurement covered a missing moment…
Exploring New Small System Geometries in Heavy Ion Collisions
S. H. Lim, J. Carlson, C. Loizides +5
Relativistic heavy ion collisions produce nuclei-sized droplets of quark-gluon plasma whose expansion is well described by viscous hydrodynamic calculations. Over the past half dec…