180 citations · 441 across the 9 of their papers we have counts for
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Density-dependent nucleon-nucleon interaction from UIX three-nucleon force
Alessandro Lovato, Omar Benhar, Stefano Fantoni +2
A density-dependent two-nucleon potential has been derived in the formalism of correlated basis function. The effects of 3-particle interactions has been included by integrating ou…
Density-dependent nucleon-nucleon interaction from three-nucleon forces
Alessandro Lovato, Omar Benhar, Stefano Fantoni +2
Microscopic calculations based on realistic nuclear hamiltonians, while yielding accurate results for the energies of the ground and low-lying excited states of nuclei with $A \leq…
Equation of state of low--density neutron matter and the pairing gap
S. Gandolfi, A. Yu. Illarionov, F. Pederiva +2
We report results of the equation of state of neutron matter in the low--density regime, where the Fermi wave vector ranges from . Neutron ma…
Quantum Monte Carlo calculation of the equation of state of neutron matter
S. Gandolfi, A. Yu. Illarionov, K. E. Schmidt +2
We calculate the equation of state of neutron matter at zero temperature by means of the auxiliary field diffusion Monte Carlo method (AFDMC) combined with a fixed-phase approximat…
Monte Carlo approach to nuclei and nuclear matter
Stefano Fantoni, Stefano Gandolfi, Alexey Yu. Illarionov +2
We report on the most recent applications of the Auxiliary Field Diffusion Monte Carlo (AFDMC) method. The equation of state (EOS) for pure neutron matter in both normal and BCS ph…
S-pairing in neutron matter. I. Correlated Basis Function Theory
Adelchi Fabrocini, Stefano Fantoni, Alexey Yu. Illarionov +1
S-wave pairing in neutron matter is studied within an extension of correlated basis function (CBF) theory to include the strong, short range spatial correlations due to realistic n…