β decay of 116Agm and the vibrational structure of 116Cd
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ID: 272215
2001
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Abstract
The structure of near neutron midshell ${}^{116}\mathrm{Cd}$ has been investigated via \ensuremath{\beta} decay of ${}^{116}{\mathrm{Ag}}^{m}$ by \ensuremath{\beta}-\ensuremath{\gamma} and \ensuremath{\gamma}-\ensuremath{\gamma} coincidence spectroscopy. The ${}^{116}{\mathrm{Ag}}^{m}$ activity was produced by symmetric fission of natural uranium induced by 25 MeV protons. The ion guide technique has been employed to produce online mass separated sources. The decay scheme of ${}^{116}{\mathrm{Ag}}^{m}$ has been considerably extended by adding 19 new excited states of ${}^{116}\mathrm{Cd}.$ The newly identified ${}^{116}\mathrm{Cd}$ state at 1869.7 keV, along with other four levels near 2 MeV, are interpreted as forming the complete three-phonon quintuplet. The vibrational structure of ${}^{116}\mathrm{Cd}$ is discussed in the context of an anharmonic vibrator.
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wang2001physicalβ
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| Authors | Youbao Wang;P. Dendooven;J. Huikari;A. Jokinen;V. S. Kolhinen;G. Lhersonneau;A. Nieminen;S. Nummela;H. Penttilä;K. Peräjärvi;S. Rinta-Antila;J. Szerypo;J. C. Wang;J. Äystö; |
| Journal | physical review c |
| Year | 2001 |
| DOI |
doi:10.1103/PhysRevC.64.054315
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