New results on the decay spectroscopy of 254No with GABRIELA@SHELS

Author:

Forge M.,Dorvaux O.,Lopez-Martens A.,Kessaci K.,Gall B.J.P.,Hauschild K.,Asfari Z.,Chakma R.,Yeremin A.V.,Chelnokov M.L.,Chepigin V.I.,Isaev A.V.,Izosimov I.N.,Katrasev D.,Kuznetsova A.A.,Malyshev O.N.,Mukhin R.,Popeko A.G.,Popov Yu.A.,Svirikhin A.I.,Sokol E.A.,Tezekbayeva M.S.,Piot J.

Abstract

Abstract The structure of the 102 254 No 152 nucleus has been studied for more than 20 years: the last publications on its decay spectroscopy are from LBNL [1], GSI [2], JYFL [3] and ANL [4]. Four decay schemes featuring two isomers have been published and are interpreted differently in terms of excitation energy and decay scheme of the 2 nd isomer and configuration assignments of both K-isomers. These discrepancies have triggered new experiments including this one, performed with the GABRIELA [5, 6] array, at the focal plane of the SHELS [7] separator at the FLNR, Dubna. The first part of this proceeding will present the experimental setup and the analysis techniques used to reveal the electromagnetic decay of the known isomers in 254No. The second part will focus on the new results obtained with more than 1 million 254No nuclei implanted in the focal plane detector. In particular, the internal conversion electron spectrum observed in the decay of the 8 K-isomer has revealed the presence of a strong transition, most likely E0, suggesting low-lying shape coexistence in this nucleus as predicted in [8, 9]. The γ-ray spectrum obtained from the decay of the short-lived 170 μs isomer has revealed new γ-ray lines putting in doubt the previous interpretations about this isomer decay.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

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