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Öğe Delayed backbending in the ?h9/2 band of 187Ir(American Physical Society, 2003) Danchev M.; Balabanski D.L.; Yigitoglu I.; Akkus B.; Beausang C.W.; Bostan M.; Hartley D.J.High-spin states of 187Ir have been populated in the 176Yb(15N, 4n) reaction and measured with the YRAST Ball spectrometer. The ?h9/2 rotational band has been extended beyond the first alignment crossing, which was found at rotational frequency ??c ? 0.39 MeV. Two different scenarios for describing this crossing are considered: The alignment of an h9/2 proton or i13/2 neutron pair and it is concluded that a proton band crossing is more likely. A systematic study of the rotational alignment crossings in the ?h9/2 bands in the N=104, 106, 108 isotopes of 73Ta, 75Re, 77Ir, and 79Au is presented.Öğe Delayed backbending in the [Formula Presented] band of [Formula presented](2003) Danchev M.; Balabanski D.L.; Yigitoglu I.; Akkus B.; Beausang C.W.; Bostan M.; Hartley D.J.High-spin states of [Formula presented] have been populated in the [Formula presented] reaction and measured with the YRAST Ball spectrometer. The [Formula Presented] rotational band has been extended beyond the first alignment crossing, which was found at rotational frequency [Formula Presented]. Two different scenarios for describing this crossing are considered: the alignment of an [Formula Presented] proton or [Formula Presented] neutron pair and it is concluded that a proton band crossing is more likely. A systematic study of the rotational alignment crossings in the [Formula Presented] bands in the [Formula Presented] isotopes of [Formula presented] and [Formula presented] is presented. © 2003 The American Physical Society.