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- W106642711 endingPage "3218" @default.
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- W106642711 abstract "High-spin states have been populated in the neutron-deficient ${}^{135,136}mathrm{Sm}$ nuclei via the ${}^{105}mathrm{Pd}{(}^{35}mathrm{Cl},pxn)$ reaction at a beam energy of 180 MeV. Transitions within the Sm nuclei were enhanced by using the Microball charged particle array and $ensuremath{gamma}$-ray de-excitation was studied using Gammasphere. A new highly deformed band has been observed in the data and assigned to ${}^{136}mathrm{Sm}.$ Comparison of the properties of the new band with Woods-Saxon cranking calculations suggests that it is built upon a $ensuremath{nu}{(i}_{13/2}{)}^{2}$ configuration. The band shows evidence for an interaction at $ensuremath{Elzxh}ensuremath{omega}ensuremath{sim}0.7 mathrm{MeV}.$ This has tentatively been interpreted as resulting from a crossing between the $ensuremath{alpha}=+1/2$ signatures of the $[532]5/2$ and $[541]1/2$ proton orbitals. The previously known $ensuremath{nu}{i}_{13/2}$ intruder band in ${}^{135}mathrm{Sm}$ was also observed and extended to higher rotational frequency. Both structures show good agreement with extended total Routhian surface calculations." @default.
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- W106642711 date "1998-12-01" @default.
- W106642711 modified "2023-10-01" @default.
- W106642711 title "Highly deformed structures in135,136Sm" @default.
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- W106642711 doi "https://doi.org/10.1103/physrevc.58.3212" @default.
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