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Comprehensive<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:mi>γ</mml:mi></mml:mrow></mml:math>-ray spectroscopy of rotational bands in the<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:mi>N</mml:mi><mml:mo>=</mml:mo><mml:mi>Z</mml:mi><mml:mo>+</mml:mo><mml:mn>1</mml:mn></mml:mrow></mml:math>nucleus<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mmultiscripts><mml:mi mathvariant="normal">Zn</mml:mi><mml:mprescripts/><mml:none/><mml:mrow><mml:mn>61</mml:mn></mml:mrow></mml:mmultiscripts></mml:math>

L.-L. AnderssonDepartment of Physics, Lund University, S-22100 Lund, SwedenI. RagnarssonD. RudolphDepartment of Physics, Lund University, S-22100 Lund, SwedenEmma JohanssonDepartment of Physics, Lund University, S-22100 Lund, SwedenD. A. TorresDepartamento de Física, Universidad Nacional de Colombia, Bogotá, ColombiaC. AndreoiuDepartment of Physics, Lund University, S-22100 Lund, SwedenM. P. CarpenterPhysics Division, Argonne National Laboratory, Argonne, Illinois 60439, USAR. J. CharityChemistry Department, Washington University, St. Louis, Missouri 63130, USAC. J. ChiaraChemistry Department, Washington University, St. Louis, Missouri 63130, USAJ. EkmanDepartment of Physics, Lund University, S-22100 Lund, SwedenC. FahlanderDepartment of Physics, Lund University, S-22100 Lund, SwedenC. HoelChemistry Department, Washington University, St. Louis, Missouri 63130, USAO. L. PechenayaPhysics Department, Washington University, St. Louis, Missouri 63130, USAW. ReviolChemistry Department, Washington University, St. Louis, Missouri 63130, USAR. du RietzDepartment of Physics, Lund University, S-22100 Lund, SwedenD. G. SarantitesChemistry Department, Washington University, St. Louis, Missouri 63130, USAD. SeweryniakPhysics Division, Argonne National Laboratory, Argonne, Illinois 60439, USAL. G. SobotkaChemistry Department, Washington University, St. Louis, Missouri 63130, USAS. ZhuPhysics Division, Argonne National Laboratory, Argonne, Illinois 60439, USA
2009lv
ABI

Аннотация

The ${}_{30}^{61}{\mathrm{Zn}}_{31}$ nucleus has been studied via the combined data of two fusion-evaporation reaction experiments using a $^{36}\mathrm{Ar}$ beam and a $^{28}\mathrm{Si}$ target foil. The experimental setups involved the Ge array GAMMASPHERE and neutron and charged particle detectors placed around the target position. The resulting level scheme comprises about 120 excited states connected via some 180 $\ensuremath{\gamma}$-ray transitions. In total, seven rotational structures were identified up to $I~25$ or higher and compared with predictions from cranked Nilsson-Strutinsky calculations.

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