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      Evidence of three-nucleon force effects from\(130\phantom{\rule{0.3em}{0ex}}\text{MeV}\)deuteron-proton breakup cross section measurement

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          Most cited references65

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          Is Open Access

          Construction of high-quality Nucleon-Nucleon potential models

          We present an updated version (Nijm93) of the Nijmegen soft-core potential, which gives a much better description of the np data than the older version (Nijm78). The chi^2 per datum is 1.87. The configuration-space and momentum-space versions of this potential are exactly equivalent; a unique feature among meson-theoretical potentials. We also present three new NN potential models: a non-local Reid-like Nijmegen potential (NijmI), a local version (NijmII), and an updated regularized version (Reid93) of the Reid soft-core potential. These three potentials all have a nearly optimal chi^2 per datum and can therefore be considered as alternative partial-wave analyses. All potentials contain the proper charge-dependent one-pion-exchange tail. Fortran code for the potentials can be obtained via anonymous ftp from thef-nym.sci.kun.nl
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            An accurate nucleon-nucleon potential with charge-independence breaking

            We present a new high-quality nucleon-nucleon potential with explicit charge dependence and charge asymmetry, which we designate Argonne \(v_{18}\). The model has a charge-independent part with fourteen operator components that is an updated version of the Argonne \(v_{14}\) potential. Three additional charge-dependent and one charge-asymmetric operators are added, along with a complete electromagnetic interaction. The potential has been fit directly to the Nijmegen \(pp\) and \(np\) scattering data base, low-energy \(nn\) scattering parameters, and deuteron binding energy. With 40 adjustable parameters it gives a \(\chi^{2}\) per datum of 1.09 for 4301 \(pp\) and \(np\) data in the range 0--350 MeV.
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              Nuclear forces from chiral lagrangians

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                Author and article information

                Journal
                PRVCAN
                Physical Review C
                Phys. Rev. C
                American Physical Society (APS)
                0556-2813
                1089-490X
                November 2003
                November 25 2003
                : 68
                : 5
                Article
                10.1103/PhysRevC.68.054004
                fc99ceca-be3f-420a-922e-a9365aee7cd0
                © 2003

                http://link.aps.org/licenses/aps-default-license

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