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- W2535135959 abstract "A survey of experimental data about $M2$ transitions between low-lying nuclear states shows that the great majority of transitions in nuclei with $A>30$ is severely inhibited. For heavy nuclei with a permanent deformation, the inhibition can be ascribed either to $K$ forbiddenness or to an asymptotic selection rule. Even when a permanent deformation is not present, the effect of this selection rule may persist, and it can lead to $M2$ transitions whose lifetimes are several hundred times the single-particle estimate. In light nuclei, some transitions are inhibited by an isobaric-spin effect. Theroetical values are obtained for comparison with some recently measured $M2$ lifetimes in the region around $A=40$. Both quadrupole deformation and the isobaric-spin effect can contribute to inhibitions in this region. The isobaric-spin effect is sufficient to account for the lifetimes in ${mathrm{K}}^{39}$ and ${mathrm{Ca}}^{41}$. For nuclei further removed from ${mathrm{Ca}}^{40}$, the effect of deformation is also necessary. In some simple examples we show that such a trend results from the nature of the particle-hole interaction." @default.
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- W2535135959 date "1967-09-20" @default.
- W2535135959 modified "2023-09-26" @default.
- W2535135959 title "M2Transitions in Nuclei" @default.
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- W2535135959 doi "https://doi.org/10.1103/physrev.161.915" @default.
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