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- W1633837105 abstract "The binding energy of the trinucleon system can now be calculated for a model Hamiltonian with both two- and three-body forces to an accuracy of 10 keV. At least 34 channels must be used in the numerical calculations to achieve this accuracy. All models which use only two-body interactions yield binding energies which are below the experimental values. The addition of either the Tucson-Melbourne or the Brazil two-pion-exchange three-nucleon force to the model Hamiltonian produces a large change in the binding energy. If one uses the commonly accepted value of the pion-nucleon form factor cutoff for the three-body force, then both three-body force models overbind the triton by about 1.5 MeV. Also, the addition of a three-body force to the model Hamiltonian does not produce significant changes in the charge density." @default.
- W1633837105 created "2016-06-24" @default.
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- W1633837105 date "2008-04-07" @default.
- W1633837105 modified "2023-09-26" @default.
- W1633837105 title "The triton binding-energy problem" @default.
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- W1633837105 doi "https://doi.org/10.1007/3-540-16805-2_12" @default.
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