Abstract
Neutron-rich silver isotopes were populated in the fragmentation of a 136Xe beam and the relativistic fission of 238U. The fragments were mass analyzed with the GSI Fragment Separator and subsequently implanted into a passive stopper. Isomeric transitions were detected by 105 high-purity germanium detectors. Eight isomeric states were observed in 122-126Ag nuclei. The level schemes of 122,123,125Ag were revised and extended with isomeric transitions being observed for the first time. The excited states in the odd-mass silver isotopes are interpreted as core-coupled states. The isomeric states in the even-mass silver isotopes are discussed in the framework of the proton-neutron split multiplets. The results of shell-model calculations, performed for the most neutron-rich silver nuclei are compared to the experimental data. © 2013 American Physical Society.
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CITATION STYLE
Lalkovski, S., Bruce, A. M., Jungclaus, A., Górska, M., Pfützner, M., Cáceres, L., … Zhekova, M. (2013). Core-coupled states and split proton-neutron quasiparticle multiplets in 122-126Ag. Physical Review C - Nuclear Physics, 87(3). https://doi.org/10.1103/PhysRevC.87.034308
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