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Effective theory for the two-nucleon system
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abstract
We apply the method of unitary transformations to a model two-nucleon potential and construct from it an effective potential in a subspace of momenta below a given cut-off $\Lambda$. The S-matrices in the full space and in the subspace are shown to be identical. We solve numerically the Schr\"odinger equation in the small momentum space and recover exactly the bound and scattering states of the full theory. We then expand the heavy repulsive meson exchange of the effective potential in a series of local contact terms and discuss the question of naturalness of the corresponding coupling constants. Using our exact effective theory we address further issues related to the chiral perturbation theory approach of the two-nucleon system. The coordinate space representation of the effective potential is also considered.
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Cited by 1 Pith paper
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Nuclear and neutron matter in the relativistic Brueckner-Hartree-Fock theory with next-to-leading order covariant chiral nuclear force
The authors find that NLO covariant chiral nuclear forces in relativistic Brueckner-Hartree-Fock theory reproduce the empirical saturation energy, density, and incompressibility of symmetric nuclear matter at cutoff 5...
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