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- W2016121346 endingPage "1924" @default.
- W2016121346 startingPage "1910" @default.
- W2016121346 abstract "An off-shell effective-rangelike theory is developed for the low-energy two-nucleon $T$ matrix. It is shown that the parameters in the theory can be determined from on-shell scattering data. The parameters are determined from the $^{3}S_{1}$ and $^{1}S_{0}$ two-nucleon phase shifts, and the validity of the off-shell formula is tested by means of examples. For the cases considered, the formula is found to work very well. A new proof for the separability of the two-body $T$ matrix near bound-state and resonance energies is given. This proof is based on the properties of the $T$ matrix in configuration space. A theorem on the factorization of the Jost function is developed and used to solve the inversion problem for rank-two separable potentials. Results are given for phase shifts that become hard-core phase shifts at high energies and for tensor forces. These results allow one to construct a separable potential that has the same on-shell $T$ matrix and bound-state wave function as a realistic local potential." @default.
- W2016121346 created "2016-06-24" @default.
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- W2016121346 date "1970-06-01" @default.
- W2016121346 modified "2023-09-25" @default.
- W2016121346 title "Off-ShellTMatrix and the Jost Function" @default.
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- W2016121346 doi "https://doi.org/10.1103/physrevc.1.1910" @default.
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