arXiv:1701.06399·v1·Nuclear Theory
Benchmark Results for Few-Body Hypernuclei
F. Ferrari Ruffino🇮🇹 · N. Barnea🇮🇱 · S. Deflorian🇮🇹 · W. Leidemann🇮🇹 · D. Lonardoni🇺🇸 · G. Orlandini🇮🇹 · F. Pederiva🇮🇹
Abstract
The Non-Symmetrized Hyperspherical Harmonics method (NSHH) is introduced in the hypernuclear sector and benchmarked with three different ab-initio methods, namely the Auxiliary Field Diffusion Monte Carlo method, the Faddeev-Yakubovsky approach and the Gaussian Expansion Method. Binding energies and hyperon separation energies of three- to five-body hypernuclei are calculated by employing the two-body N component of the phenomenological Bodmer-Usmani potential, and a hyperon-nucleon interaction simulating the scattering phase shifts given by NSC97f. The range of applicability of the NSHH method is briefly discussed.