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NEUTRON MATTER AT NORMAL NUCLEAR DENSITIES
THE SHORT RANGE REPULSION AND THE INTERMEDIATE
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annihilation antiproton antiprotonic atoms assumed AVeff binding energy box diagram calculated closure approximation core of radius corresponding coupled channels approach coupled equations coupling constant deuteron effective potential caused elastic potential energy dependent energy of neutron explicitly free parameter G-parity transformation give given Haapakoski hard core potential Holinde impulse approximation included inelastic process inelastic term isobars isospin level widths Maruyama and Ueda meson exchange neutron matter NN-case NN-interaction NN-scattering Nucl Nucl.Phys nuclear matter nuclear wavefunctions nuclei nucleon nucleon-antinucleon nucleon-nucleon interaction nucleon-nucleon potential nucleon-nucleon scattering OBEP p-meson Paper Pauli effect Pauli principle phase shift equivalent phase shifts phenomenological repulsion Phys Phys.Lett pion potential V2 protons quark model radius 0.5 fm range component Reid resonances Riska S-waves Saarela scattering amplitude separation energy short range repulsion shown simulate solid line Table tensor transition potential two-body two-nucleon University of Helsinki Uobep Vobep w-meson coupling wavefunctions