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- W2025607969 startingPage "B1261" @default.
- W2025607969 abstract "Nuclear spectroscopic calculations with a potential of the type $v(r)={v}_{0}[({r}^{n}ensuremath{-}frac{{c}^{n}}{{r}^{n}})]mathrm{exp}(ensuremath{-}frac{{r}^{2}}{{{r}_{0}}^{2}})$ are made for the core radius $c=0.4$ F and potential range ${r}_{0}=2.06$ F. For simplicity of calculation, $n=2$ is assumed. The calculations are made for $f$, $p$, and $g$-shell nuclei. It is shown that in the case of ${mathrm{Zr}}^{90}$ the configuration dependence of the effective two-body interaction can be replaced by a singular potential. The configuration interaction in this nucleus is found to depress the ground state ${0}^{+}$ by ensuremath{sim} 0.4 MeV and raise the excited ${0}^{+}$ level by the same amount. For the $f$ and $p$ shells, the level splittings in ${mathrm{Ti}}^{50}$, ${mathrm{Ni}}^{58}$, and ${mathrm{Be}}^{10}$ are analyzed. The calculations show that the triplet forces are small for these configurations." @default.
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- W2025607969 date "1964-12-07" @default.
- W2025607969 modified "2023-09-24" @default.
- W2025607969 title "Nuclear Spectroscopy With a Soft Core Potential" @default.
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- W2025607969 doi "https://doi.org/10.1103/physrev.136.b1261" @default.
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