We present lattice calculations for the ground-state energies of tritium, helium-3, helium-4, lithium-6, and carbon-12 nuclei. Our results were previously summarized in a letter publication. This paper provides full details of the calculations. We include isospin-breaking, Coulomb effects, and interactions up to next-to-next-to-leading order in chiral effective field theory
While attempts to solve the equations of Quantum Chromodynamics (QCD) numerically in the low energy ...
We propose an arrangement of the most commonly invoked version of the two-nucleon chiral potential s...
This work discusses reliability, possible obstacles and the future perspective of chiral extrapolati...
We present lattice results for the ground state energies of tritium, helium-3, helium-4, lithium-6, ...
We consider low-energy nucleons at next-to-next-to-leading order in lattice chiral effective field t...
This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EF...
We discuss lattice simulations of light nuclei at leading order in the chiral effective field theory...
We present lattice calculations for the ground-state energy of dilute neutron matter at next-to-lead...
We present lattice calculations for the ground-state energy of dilute neutron matter at next-to-lead...
Properties of finite nuclei are evaluated with two-nucleon (NN) and three-nucleon (NNN) interactions...
We discuss lattice simulations of light nuclei at leading order in chiral effective field theory. Us...
We review recent progress on nuclear lattice simulations using chiral effective field theory. We disc...
I discuss our recent work on Green’s function Monte Carlo (GFMC) calculations of light nuclei using ...
In this Thesis, we study nuclear reactions and interactions for heavy nuclei based on chiral effecti...
In recent years local chiral interactions have been derived and implemented in quantum Monte Carlo m...
While attempts to solve the equations of Quantum Chromodynamics (QCD) numerically in the low energy ...
We propose an arrangement of the most commonly invoked version of the two-nucleon chiral potential s...
This work discusses reliability, possible obstacles and the future perspective of chiral extrapolati...
We present lattice results for the ground state energies of tritium, helium-3, helium-4, lithium-6, ...
We consider low-energy nucleons at next-to-next-to-leading order in lattice chiral effective field t...
This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EF...
We discuss lattice simulations of light nuclei at leading order in the chiral effective field theory...
We present lattice calculations for the ground-state energy of dilute neutron matter at next-to-lead...
We present lattice calculations for the ground-state energy of dilute neutron matter at next-to-lead...
Properties of finite nuclei are evaluated with two-nucleon (NN) and three-nucleon (NNN) interactions...
We discuss lattice simulations of light nuclei at leading order in chiral effective field theory. Us...
We review recent progress on nuclear lattice simulations using chiral effective field theory. We disc...
I discuss our recent work on Green’s function Monte Carlo (GFMC) calculations of light nuclei using ...
In this Thesis, we study nuclear reactions and interactions for heavy nuclei based on chiral effecti...
In recent years local chiral interactions have been derived and implemented in quantum Monte Carlo m...
While attempts to solve the equations of Quantum Chromodynamics (QCD) numerically in the low energy ...
We propose an arrangement of the most commonly invoked version of the two-nucleon chiral potential s...
This work discusses reliability, possible obstacles and the future perspective of chiral extrapolati...