Physics – Nuclear Physics – Nuclear Theory
Scientific paper
2007-09-29
Phys.Rev.C77:027001,2008
Physics
Nuclear Physics
Nuclear Theory
4 pages, 1 figure
Scientific paper
10.1103/PhysRevC.77.027001
Previously we calculated the binding energies of the triton and hypertriton, using an SU_6 quark-model interaction derived from a resonating-group method of two baryon clusters. In contrast to the previous calculations employing the energy-dependent interaction kernel, we present new results using a renormalized interaction, which is now energy independent and reserves all the two-baryon data. The new binding energies are slightly smaller than the previous values. In particular the triton binding energy turns out to be 8.14 MeV with a charge-dependence correction of the two-nucleon force, 190 keV, being included. This indicates that about 350 keV is left for the energy which is to be accounted for by three-body forces.
Fujiwara Yasuhiro
Kohno Makoto
Miyagawa Kazuya
Suzuki Yasuhiro
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