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Study of shape coexistence in the very neutron-deficient nucleus {sup 176}Hg

The ground-state yrast band in {sup 176}Hg has been observed up to I=10({Dirac_h}/2{pi}) by using the recoil decay tagging (RDT) method. The irregularity of this band indicates that the prolate intruder band, seen in the heavier Hg isotopes near the neutron mid-shell, crosses the nearly spherical gr...

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Published in:AIP conference proceedings 1999-11, Vol.495 (1)
Main Authors: Muikku, M., Cocks, J. F. C., Helariutta, K., Greenlees, P. T., Jones, P. M., Julin, R., Juutinen, S., Kankaanpaeae, H., Kettunen, H., Kuusiniemi, P., Leino, M., Rahkila, P., Savelius, A., Trzaska, W., Uusitalo, J.
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container_title AIP conference proceedings
container_volume 495
creator Muikku, M.
Cocks, J. F. C.
Helariutta, K.
Greenlees, P. T.
Jones, P. M.
Julin, R.
Juutinen, S.
Kankaanpaeae, H.
Kettunen, H.
Kuusiniemi, P.
Leino, M.
Rahkila, P.
Savelius, A.
Trzaska, W.
Uusitalo, J.
description The ground-state yrast band in {sup 176}Hg has been observed up to I=10({Dirac_h}/2{pi}) by using the recoil decay tagging (RDT) method. The irregularity of this band indicates that the prolate intruder band, seen in the heavier Hg isotopes near the neutron mid-shell, crosses the nearly spherical ground-state band of {sup 176}Hg above I=6({Dirac_h}/2{pi})
doi_str_mv 10.1063/1.1302307
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source American Institute of Physics:Jisc Collections:Transitional Journals Agreement 2021-23 (Reading list)
subjects DEFORMED NUCLEI
GAMMA SPECTROSCOPY
GROUND STATES
MERCURY 176
NEUTRON-DEFICIENT ISOTOPES
NEUTRONS
NUCLEAR DECAY
NUCLEAR PHYSICS AND RADIATION PHYSICS
NUCLEAR STRUCTURE
RECOILS
YRAST STATES
title Study of shape coexistence in the very neutron-deficient nucleus {sup 176}Hg
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