The Auxiliary Field Diffusion Monte Carlo method has been applied to simulate droplets of 7 and 8 neutrons. Results for realistic nucleon-nucleon interactions, which include tensor, spin--orbit and three--body forces, plus a standard one--body confining potential, have been compared with analogous calculations obtained with Green's Function Monte Carlo methods. We have studied the dependence of the binding energy, the one--body density and the spin--orbit splittings of $^7n$ on the depth of the confining potential. The results obtained show an overall agreement between the two quantum Monte Carlo methods, although there persist differences in the evaluation of spin--orbit forces, as previously indicated by bulk neutron matter calculations. ...
Quantum Monte Carlo methods have recently been employed to study properties of nuclei and infinite m...
Recently, a realistic nucleon-nucleon potential has been developed with the goal of accurately repro...
We review the calculation of the equation of state of pure neutron matter using quantum Monte Carlo ...
In this thesis, I discuss the use of the Auxiliary Field Diffusion Monte Carlo method to compute the...
The energy per particle of zero-temperature neutron matter is investigated, with particular emphasis...
We report benchmark calculations of the energy per particle of pure neutron matter as a function of ...
The diffusion quantum Monte Carlo method is extended to solve the old theoretical physics problem of...
We computed ground-state energies of calcium isotopes from 42Ca to 48Ca by means of the Auxiliary Fi...
We present calculations of the energy per particle of pure neutron and symmetric nuclear matter with...
Recently, a realistic nucleon-nucleon potential has been developed with the goal of accurately repro...
We present results for neutron star models constructed with a new equation of state for nuclear mat...
We present the equation of state of infinite neutron matter as obtained from highly-realistic Hamilt...
We study the energy per particle of symmetric nuclear matter and pure neutron matter using realistic...
We computed ground-state energies of calcium isotopes from 42Ca to 48Ca by means of the Auxiliary Fi...
Introduction In this thesis I report the work of my PhD; it treated two different topics, both relat...
Quantum Monte Carlo methods have recently been employed to study properties of nuclei and infinite m...
Recently, a realistic nucleon-nucleon potential has been developed with the goal of accurately repro...
We review the calculation of the equation of state of pure neutron matter using quantum Monte Carlo ...
In this thesis, I discuss the use of the Auxiliary Field Diffusion Monte Carlo method to compute the...
The energy per particle of zero-temperature neutron matter is investigated, with particular emphasis...
We report benchmark calculations of the energy per particle of pure neutron matter as a function of ...
The diffusion quantum Monte Carlo method is extended to solve the old theoretical physics problem of...
We computed ground-state energies of calcium isotopes from 42Ca to 48Ca by means of the Auxiliary Fi...
We present calculations of the energy per particle of pure neutron and symmetric nuclear matter with...
Recently, a realistic nucleon-nucleon potential has been developed with the goal of accurately repro...
We present results for neutron star models constructed with a new equation of state for nuclear mat...
We present the equation of state of infinite neutron matter as obtained from highly-realistic Hamilt...
We study the energy per particle of symmetric nuclear matter and pure neutron matter using realistic...
We computed ground-state energies of calcium isotopes from 42Ca to 48Ca by means of the Auxiliary Fi...
Introduction In this thesis I report the work of my PhD; it treated two different topics, both relat...
Quantum Monte Carlo methods have recently been employed to study properties of nuclei and infinite m...
Recently, a realistic nucleon-nucleon potential has been developed with the goal of accurately repro...
We review the calculation of the equation of state of pure neutron matter using quantum Monte Carlo ...