130 research outputs found

    Evidence for shape coexistence in odd-mass rhodium nuclei

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    Results from the study of the ‘@‘Ru (‘He, d) “‘Rh reaction reveal evidence for shape coexistence in odd-mass rhodium isotopes. The strongly excited states at 786, 806, 969, 1019 and 1355 keV in “‘Rh are good candidates for a rotational-like positive-parity band with J”= l/2+, 3/2+, 5/2+, 7/2+ and 9/2+, respectively, coexisting with spherical shell-model states like lg92 2p12 2p32 and lf52 as well as core-coupled configurations

    Quadrupole-deformed and octupole collective bands in 228^{228}Ra

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    Spins and parities for collective states in 228^{228}Ra have been determined from conversion electron measurements with a mini-orange β\beta-spectrometer. The fast-timing βγγ(t)\beta\gamma\gamma(t) method has been used to measure lifetimes of T1/2_{1/2}=550(20) ps and 181(3) ps for the 21+2^{+}_{1} and 41+4^{+}_{1} members of the K=0+^{+} band, and T1/2⩽_{1/2} \leqslant 7 ps and ⩽\leqslant 6 ps for the 11−1^{-}_{1} and 31−3^{-}_1 members of the K = 0−0^{-} band, respectively The quadrupole moments, Q0Q_{0} deduced from the B (E2; 21+→01+_{1}^{+} \rightarrow 0_{1}^{+}) and B (E2; 41+→21+_{1}^{+} \rightarrow 2_1^{+}) rates are in good agreement with the previously measured value and the systematics of the region. However, the B(E1) rates of ⩾\geqslant 4 × 10−4^{−4} e2^{2}fm2^{2}, which represent the first B(E1) measurements for this nucleus, are at least 25 times larger than the value previously suggested for 228^{228}Ra. The new results are consistent with the B(E1) rates recently measured for the neighbouring 227^{227}Ra and reveal octupole correlations in 228^{228}Ra

    The decay of163Tb

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    Levels in the Transitional Nuclei 106Ru^{106}Ru and 108Ru^{108}Ru

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    Decay properties of neutron-rich niobium isotopes

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