Properties of finite nuclei are evaluated with two-nucleon (NN) and three-nucleon (NNN) interactions derived within chiral effective field theory (EFT). The nuclear Hamiltonian is fixed by properties of the A=2 system, except for two low-energy constants (LECs) that parameterize the short range NNN interaction. We constrain those two LECs by a fit to the A=3 system binding energy and investigate sensitivity of 4He, 6Li, 10,11B and 12,13C properties to the variation of the constrained LECs. We identify a preferred choice that gives globally the best description. We demonstrate that the NNN interaction terms significantly improve the binding energies and spectra of mid-p-shell nuclei not just with the preferred choice of the LECs but even wit...
In recent years local chiral interactions have been derived and implemented in quantum Monte Carlo m...
We present a comprehensive investigation of few-nucleon systems as well as light and medium-mass nuc...
A long-standing goal of nuclear theory is to determine the properties of atomic nuclei based on the ...
Properties of finite nuclei are evaluated with two-nucleon (NN) and three-nucleon (NNN) interactions...
Properties of finite nuclei are evaluated with two-nucleon (NN) and three-nucleon (NNN) interactions...
Background: Recent advances in nuclear structure theory have led to the availability of several comp...
Chiral effective field theory allows for a systematically improvable construction of nuclear interac...
With the goal of developing predictive ab initio capability for light and medium-mass nuclei, two-nu...
Chiral effective field theory provides nuclear interactions rooted in Quantum Chromodynamics in a sy...
We optimize the nucleon-nucleon interaction from chiral effective field theory at next-to-next-to-le...
We study ground-state energies and charge radii of closed-shell medium-mass nuclei based on novel ch...
In the past decades, it has been shown that the three-body force is necessary for a fully microscopi...
The energy per particle of symmetric nuclear matter and pure neutron matter is calculated using the ...
Nuclear interactions derived within chiral effective field theory enable nuclear structure and react...
AbstractThe energy per particle of symmetric nuclear matter and pure neutron matter is calculated us...
In recent years local chiral interactions have been derived and implemented in quantum Monte Carlo m...
We present a comprehensive investigation of few-nucleon systems as well as light and medium-mass nuc...
A long-standing goal of nuclear theory is to determine the properties of atomic nuclei based on the ...
Properties of finite nuclei are evaluated with two-nucleon (NN) and three-nucleon (NNN) interactions...
Properties of finite nuclei are evaluated with two-nucleon (NN) and three-nucleon (NNN) interactions...
Background: Recent advances in nuclear structure theory have led to the availability of several comp...
Chiral effective field theory allows for a systematically improvable construction of nuclear interac...
With the goal of developing predictive ab initio capability for light and medium-mass nuclei, two-nu...
Chiral effective field theory provides nuclear interactions rooted in Quantum Chromodynamics in a sy...
We optimize the nucleon-nucleon interaction from chiral effective field theory at next-to-next-to-le...
We study ground-state energies and charge radii of closed-shell medium-mass nuclei based on novel ch...
In the past decades, it has been shown that the three-body force is necessary for a fully microscopi...
The energy per particle of symmetric nuclear matter and pure neutron matter is calculated using the ...
Nuclear interactions derived within chiral effective field theory enable nuclear structure and react...
AbstractThe energy per particle of symmetric nuclear matter and pure neutron matter is calculated us...
In recent years local chiral interactions have been derived and implemented in quantum Monte Carlo m...
We present a comprehensive investigation of few-nucleon systems as well as light and medium-mass nuc...
A long-standing goal of nuclear theory is to determine the properties of atomic nuclei based on the ...