We discuss lattice simulations of light nuclei at leading order in the chiral effective field theory. Using lattice pion fields and auxiliary fields, we include the physics of instantaneous one-pion exchange and the leading-order S-wave contact interactions. We also consider higher-derivative contact interactions which adjust the S-wave scattering amplitude at higher momenta. By construction our lattice path integral is positive definite in the limit of exact Wigner SU(4) symmetry for any even number of nucleons. This SU(4) positivity and the approximate SU(4) symmetry of the low-energy interactions play an important role in suppressing sign and phase oscillations in Monte Carlo simulations. We assess the computational scaling of the lattic...
We present an exploratory study of chiral effective theories of nuclei with methods adopted from lat...
We propose an arrangement of the most commonly invoked version of the two-nucleon chiral potential s...
While attempts to solve the equations of Quantum Chromodynamics (QCD) numerically in the low energy ...
We discuss lattice simulations of light nuclei at leading order in chiral effective field theory. Us...
We consider low-energy nucleons at next-to-next-to-leading order in lattice chiral effective field t...
We study nucleon-nucleon scattering on the lattice at next-to-leading order in chiral effective fiel...
This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EF...
We present lattice calculations for the ground-state energies of tritium, helium-3, helium-4, lithiu...
We study nuclear and neutron matter by combining chiral effective field theory with non-perturbative...
We carry out a comprehensive analysis of the neutron-proton interaction up to the third order in the...
We review recent progress on nuclear lattice simulations using chiral effective field theory. We disc...
We study the triton and three-nucleon force at lowest chiral order in pionless effective field theor...
We present lattice results for the ground state energies of tritium, helium-3, helium-4, lithium-6, ...
We discuss lattice simulations of the ground state of dilute neutron matter at next-to-leading order...
International audienceWe show how nuclear effective field theory (EFT) and ab initio nuclear-structu...
We present an exploratory study of chiral effective theories of nuclei with methods adopted from lat...
We propose an arrangement of the most commonly invoked version of the two-nucleon chiral potential s...
While attempts to solve the equations of Quantum Chromodynamics (QCD) numerically in the low energy ...
We discuss lattice simulations of light nuclei at leading order in chiral effective field theory. Us...
We consider low-energy nucleons at next-to-next-to-leading order in lattice chiral effective field t...
We study nucleon-nucleon scattering on the lattice at next-to-leading order in chiral effective fiel...
This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EF...
We present lattice calculations for the ground-state energies of tritium, helium-3, helium-4, lithiu...
We study nuclear and neutron matter by combining chiral effective field theory with non-perturbative...
We carry out a comprehensive analysis of the neutron-proton interaction up to the third order in the...
We review recent progress on nuclear lattice simulations using chiral effective field theory. We disc...
We study the triton and three-nucleon force at lowest chiral order in pionless effective field theor...
We present lattice results for the ground state energies of tritium, helium-3, helium-4, lithium-6, ...
We discuss lattice simulations of the ground state of dilute neutron matter at next-to-leading order...
International audienceWe show how nuclear effective field theory (EFT) and ab initio nuclear-structu...
We present an exploratory study of chiral effective theories of nuclei with methods adopted from lat...
We propose an arrangement of the most commonly invoked version of the two-nucleon chiral potential s...
While attempts to solve the equations of Quantum Chromodynamics (QCD) numerically in the low energy ...