Decay of a 19 − isomeric state in Lu 156

A multiparticle spin-trap isomeric state having a half-life of 179(4) ns and lying 2601 keV above the yrast 10(+) state in Lu-156 has been discovered. The Lu-156 nuclei were produced by bombarding isotopically enriched Cd-106 targets with beams of Ni-58 ions, separated in flight using the gas-filled...

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Veröffentlicht in:Physical review. C 2018-08, Vol.98 (2), Article 024302
Hauptverfasser: Lewis, M. C., Parr, E., Page, R. D., McPeake, C., Joss, D. T., Ali, F. A., Auranen, K., Briscoe, A. D., Capponi, L., Grahn, T., Greenlees, P. T., Henderson, J., Herzáň, A., Jakobsson, U., Julin, R., Juutinen, S., Konki, J., Labiche, M., Leino, M., Mason, P. J. R., Nyman, M., O'Donnell, D., Pakarinen, J., Papadakis, P., Partanen, J., Peura, P., Rahkila, P., Revill, J. P., Ruotsalainen, P., Sandzelius, M., Sarén, J., Sayğı, B., Scholey, C., Simpson, J., Smith, J. F., Smolen, M., Sorri, J., Stolze, S., Thornthwaite, A., Uusitalo, J.
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Sprache:eng
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Zusammenfassung:A multiparticle spin-trap isomeric state having a half-life of 179(4) ns and lying 2601 keV above the yrast 10(+) state in Lu-156 has been discovered. The Lu-156 nuclei were produced by bombarding isotopically enriched Cd-106 targets with beams of Ni-58 ions, separated in flight using the gas-filled separator RITU and their decays were measured using the GREAT spectrometer. Analysis of the main decay path that populates yrast states observed previously suggests a spin-parity assignment of 19(-) for the isomeric state, which is consistent with isomeric states identified in the N = 85 isotones. Comparison with other decay paths in Lu-156 indicates that the [pi h(11/)(2)(-1) circle times nu h(9/2)]10(+) state at the bottom of the yrast sequence is likely to be the a-decaying isomeric state, with the [pi h(11/)(2)(-1) circle times nu f(7/2)]9(+) state lying 62 keV above it. The relative ordering of the lowest-lying 9(+) and 10(+) states is inverted in Lu-156 compared with its odd-odd isotones.
ISSN:2469-9985
2469-9993
2469-9993
DOI:10.1103/PhysRevC.98.024302