We discuss lattice simulations of the ground state of dilute neutron matter at next-to-leading order in chiral effective field theory. In a previous paper the coefficients of the next-to-leading-order lattice action were determined by matching nucleon-nucleon scattering data for momenta up to the pion mass. Here the same lattice action is used to simulate the ground state of up to 12 neutrons in a periodic cube using Monte Carlo simulations. We explore the density range from 2% to 8% of normal nuclear density and analyze the ground-state energy as an expansion about the unitarity limit with corrections due to finite scattering length, effective range, and P-wave interactions
This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EF...
We present details of the derivation of local chiral effective field theory interactions to next-to-...
The physics of neutron-rich systems is of great interest in nuclear and astrophysics. Precise knowle...
We discuss lattice simulations of the ground state of dilute neutron matter at next-to-leading order...
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...
We study nuclear and neutron matter by combining chiral effective field theory with non-perturbative...
We present a new lattice formulation of chiral effective field theory interactions with a simpler de...
We review recent progress on nuclear lattice simulations using chiral effective fi...
We study nucleon-nucleon scattering on the lattice at next-to-leading order in chiral effective fiel...
We present a systematic study of neutron-proton scattering in Nuclear Lattice Effective Field Theory...
We consider low-energy nucleons at next-to-next-to-leading order in lattice chiral effective field t...
How does nuclear binding emerge from first principles? Our current best understanding of nuclear for...
We carry out a comprehensive analysis of the neutron-proton interaction up to the third order in the...
We discuss lattice simulations of light nuclei at leading order in the chiral effective field theory...
This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EF...
We present details of the derivation of local chiral effective field theory interactions to next-to-...
The physics of neutron-rich systems is of great interest in nuclear and astrophysics. Precise knowle...
We discuss lattice simulations of the ground state of dilute neutron matter at next-to-leading order...
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...
We study nuclear and neutron matter by combining chiral effective field theory with non-perturbative...
We present a new lattice formulation of chiral effective field theory interactions with a simpler de...
We review recent progress on nuclear lattice simulations using chiral effective fi...
We study nucleon-nucleon scattering on the lattice at next-to-leading order in chiral effective fiel...
We present a systematic study of neutron-proton scattering in Nuclear Lattice Effective Field Theory...
We consider low-energy nucleons at next-to-next-to-leading order in lattice chiral effective field t...
How does nuclear binding emerge from first principles? Our current best understanding of nuclear for...
We carry out a comprehensive analysis of the neutron-proton interaction up to the third order in the...
We discuss lattice simulations of light nuclei at leading order in the chiral effective field theory...
This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EF...
We present details of the derivation of local chiral effective field theory interactions to next-to-...
The physics of neutron-rich systems is of great interest in nuclear and astrophysics. Precise knowle...