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T-Y Saito

Publications and source records attributed to T-Y Saito.

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The role of the $S_{31}$ $πN$ partial wave in the three-nucleon force

We re-examine the contribution of the $πN$ $S_{31}$ channel to the three-nucleon force for an energy dependent separable potential. Despite the lack of cancellation between the $S_{31}$ and the $P_{11}$ and $P_{33}$ channels, the total contribution of the three-nucleon force to the triton binding is still small.

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The energy dependence of the $πN$ amplitude and the three-nucleon interaction

By calculating the contribution of the $π-π$ three-body force to the three-nucleon binding energy in terms of the $πN$ amplitude using perturbation theory, we are able to determine the importance of the energy dependence and the contribution of the different partial waves of the $πN$ amplitude to the three-nucleon force. A separable representation of the non-pole $πN$ amplitude allows us to write the three-nucleon force in terms of the amplitude for $NN\rightarrow NN^*$, propagation of the $NNN^*$ system, and the amplitude for $NN^*\rightarrow NN$, with $N^*$ being the $πN$ quasi-particle amplitude in a given state. The division of the $πN$ amplitude into a pole and non-pole gives a procedure for the determination of the $πNN$ form factor within the model. The total contribution of the three-body force to the binding energy of the triton for the separable approximation to the Paris nucleon-nucleon potential (PEST) is found to be very small mainly as a result of the energy dependence of the $πN$ amplitude, the cancellation between the $S$- and $P$-wave $πN$ amplitudes, and the soft $πNN$ form factor.

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