We present a new lattice formulation of chiral effective field theory interactions with a simpler decomposition into spin channels. With these interactions the process of fitting to the empirical scattering phase shifts is simplified, and the resulting lattice phase shifts are more accurate than in previous studies. We present results for the neutron-proton system up to next-to-next-to-next-to-leading order for lattice spacings of 1.97, 1.64, 1.32, and 0.99fm. Our results provide a pathway to ab initio lattice calculations of nuclear structure, reactions, and thermodynamics with accurate and systematic control over the chiral nucleon-nucleon force
We consider two-nucleon scattering close to threshold. Partial-wave amplitudes are obtained by an an...
We explore the lattice spacing dependence in Nuclear Lattice Effective Field Theory for few-body sys...
The physics of neutron-rich systems is of great interest in nuclear and astrophysics. Precise knowle...
WOS:000447466500002We present a new lattice formulation of chiral effective field theory interaction...
We carry out a comprehensive analysis of the neutron-proton interaction up to the third order in the...
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 discuss lattice simulations of the ground state of dilute neutron matter at next-to-leading order...
36th Annual International Symposium on Lattice Field Theory, LATTICE 2018 -- 22 July 2018 through 28...
We present lattice calculations for the ground-state energy of dilute neutron matter at next-to-lead...
We consider low-energy nucleons at next-to-next-to-leading order in lattice chiral effective field t...
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 optimize the nucleon-nucleon interaction from chiral effective field theory at next-to-next-to-le...
We review recent progress on nuclear lattice simulations using chiral effective fi...
We consider two-nucleon scattering close to threshold. Partial-wave amplitudes are obtained by an an...
We explore the lattice spacing dependence in Nuclear Lattice Effective Field Theory for few-body sys...
The physics of neutron-rich systems is of great interest in nuclear and astrophysics. Precise knowle...
WOS:000447466500002We present a new lattice formulation of chiral effective field theory interaction...
We carry out a comprehensive analysis of the neutron-proton interaction up to the third order in the...
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 discuss lattice simulations of the ground state of dilute neutron matter at next-to-leading order...
36th Annual International Symposium on Lattice Field Theory, LATTICE 2018 -- 22 July 2018 through 28...
We present lattice calculations for the ground-state energy of dilute neutron matter at next-to-lead...
We consider low-energy nucleons at next-to-next-to-leading order in lattice chiral effective field t...
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 optimize the nucleon-nucleon interaction from chiral effective field theory at next-to-next-to-le...
We review recent progress on nuclear lattice simulations using chiral effective fi...
We consider two-nucleon scattering close to threshold. Partial-wave amplitudes are obtained by an an...
We explore the lattice spacing dependence in Nuclear Lattice Effective Field Theory for few-body sys...
The physics of neutron-rich systems is of great interest in nuclear and astrophysics. Precise knowle...