Bootstrap consistency checks show that the NLO chiral EFT potential for the 1S0 two-nucleon wave remains valid over a significantly wider energy range than the LO version when compared to Granada phase shifts.
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High cutoffs in LO chiral EFT under Nogga-Timmermans-van Kolck power counting produce spurious bound states that prevent the Hartree-Fock method from yielding bound nuclear solutions without corrections beyond mean field.
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Bootstrapping Two-Nucleon Effective Field Theories
Bootstrap consistency checks show that the NLO chiral EFT potential for the 1S0 two-nucleon wave remains valid over a significantly wider energy range than the LO version when compared to Granada phase shifts.
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Cutoff effects in Hartree-Fock calculations at leading order of chiral effective field theory
High cutoffs in LO chiral EFT under Nogga-Timmermans-van Kolck power counting produce spurious bound states that prevent the Hartree-Fock method from yielding bound nuclear solutions without corrections beyond mean field.