H Hergert - Frontiers in Physics, 2020 - frontiersin.org
Over the last decade, new developments in Similarity Renormalization Group techniques and nuclear many-body methods have dramatically increased the capabilities of ab initio …
We perform a global sensitivity analysis of the binding energy and the charge radius of the nucleus O 16 to identify the most influential low-energy constants in the next-to-next-to …
F Nowacki, A Obertelli, A Poves - Progress in Particle and Nuclear Physics, 2021 - Elsevier
In this review, we describe the experimental facilities and methods which make it possible to produce and measure the properties of the extreme neutron-rich nuclei. We then develop …
We use coupled-cluster theory and nuclear interactions from chiral effective field theory to compute the nuclear matrix element for the neutrinoless double-β decay of Ca 48 …
We survey the impact of nuclear three-body forces on structure properties of nuclei within the shell model. It has long been acknowledged, since the seminal works of Zuker and …
The one-neutron knockout from Ca 52 in inverse kinematics onto a proton target was performed at∼ 230 MeV/nucleon combined with prompt γ spectroscopy. Exclusive quasifree …
S Chen, J Lee, P Doornenbal, A Obertelli, C Barbieri… - Physical review …, 2019 - APS
Exclusive cross sections and momentum distributions have been measured for quasifree one-neutron knockout reactions from a Ca 54 beam striking on a liquid hydrogen target at∼ …
In recent years, nuclear physics has benefited greatly from the development of powerful ab initio many-body methods and their combination with interactions from chiral effective field …
Nuclear low-lying excitation spectra are studied with the Bayesian neural network (BNN) approach by taking 0 2+, 2 1+, and 4 1+ states as examples. The BNN approach can well …