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Isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$Zn$_{49}$: signature of shape coexistence near $^{78}$Ni

Collinear laser spectroscopy is performed on the Zn493079 isotope at ISOLDE-CERN. The existence of a long-lived isomer with a few hundred milliseconds half-life is confirmed, and the nuclear spins and moments of the ground and isomeric states in Zn79 as well as the isomer shift are measured. From th...

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Autores principales: Yang, X.F., Wraith, C., Xie, L., Babcock, C., Billowes, J., Bissell, M.L., Blaum, K., Cheal, B., Flanagan, K.T., Garcia Ruiz, R. F., Gins, W., Gorges, C., Grob, L.K., Heylen, H., Kaufmann, S., Kowalska, M., Kraemer, J., Malbrunot-Ettenauer, S., Neugart, R., Neyens, G., Nörtershäuser, W., Papuga, J., Sánchez, R., Yordanov, D.T.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevLett.116.182502
https://dx.doi.org/10.1103/PhysRevLett.116.219901
http://cds.cern.ch/record/2145753
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author Yang, X.F.
Wraith, C.
Xie, L.
Babcock, C.
Billowes, J.
Bissell, M.L.
Blaum, K.
Cheal, B.
Flanagan, K.T.
Garcia Ruiz, R. F.
Gins, W.
Gorges, C.
Grob, L.K.
Heylen, H.
Kaufmann, S.
Kowalska, M.
Kraemer, J.
Malbrunot-Ettenauer, S.
Neugart, R.
Neyens, G.
Nörtershäuser, W.
Papuga, J.
Sánchez, R.
Yordanov, D.T.
author_facet Yang, X.F.
Wraith, C.
Xie, L.
Babcock, C.
Billowes, J.
Bissell, M.L.
Blaum, K.
Cheal, B.
Flanagan, K.T.
Garcia Ruiz, R. F.
Gins, W.
Gorges, C.
Grob, L.K.
Heylen, H.
Kaufmann, S.
Kowalska, M.
Kraemer, J.
Malbrunot-Ettenauer, S.
Neugart, R.
Neyens, G.
Nörtershäuser, W.
Papuga, J.
Sánchez, R.
Yordanov, D.T.
author_sort Yang, X.F.
collection CERN
description Collinear laser spectroscopy is performed on the Zn493079 isotope at ISOLDE-CERN. The existence of a long-lived isomer with a few hundred milliseconds half-life is confirmed, and the nuclear spins and moments of the ground and isomeric states in Zn79 as well as the isomer shift are measured. From the observed hyperfine structures, spins I=9/2 and I=1/2 are firmly assigned to the ground and isomeric states. The magnetic moment μ (Zn79)=-1.1866(10)μN, confirms the spin-parity 9/2+ with a νg9/2-1 shell-model configuration, in excellent agreement with the prediction from large scale shell-model theories. The magnetic moment μ (Zn79m)=-1.0180(12)μN supports a positive parity for the isomer, with a wave function dominated by a 2h-1p neutron excitation across the N=50 shell gap. The large isomer shift reveals an increase of the intruder isomer mean square charge radius with respect to that of the ground state, δ⟨rc2⟩79,79m=+0.204(6)  fm2, providing first evidence of shape coexistence.
id cern-2145753
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-21457532022-08-10T12:47:00Zdoi:10.1103/PhysRevLett.116.182502doi:10.1103/PhysRevLett.116.219901http://cds.cern.ch/record/2145753engYang, X.F.Wraith, C.Xie, L.Babcock, C.Billowes, J.Bissell, M.L.Blaum, K.Cheal, B.Flanagan, K.T.Garcia Ruiz, R. F.Gins, W.Gorges, C.Grob, L.K.Heylen, H.Kaufmann, S.Kowalska, M.Kraemer, J.Malbrunot-Ettenauer, S.Neugart, R.Neyens, G.Nörtershäuser, W.Papuga, J.Sánchez, R.Yordanov, D.T.Isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$Zn$_{49}$: signature of shape coexistence near $^{78}$Ninucl-thnucl-exNuclear Physics - ExperimentNuclear Physics - TheoryCollinear laser spectroscopy is performed on the Zn493079 isotope at ISOLDE-CERN. The existence of a long-lived isomer with a few hundred milliseconds half-life is confirmed, and the nuclear spins and moments of the ground and isomeric states in Zn79 as well as the isomer shift are measured. From the observed hyperfine structures, spins I=9/2 and I=1/2 are firmly assigned to the ground and isomeric states. The magnetic moment μ (Zn79)=-1.1866(10)μN, confirms the spin-parity 9/2+ with a νg9/2-1 shell-model configuration, in excellent agreement with the prediction from large scale shell-model theories. The magnetic moment μ (Zn79m)=-1.0180(12)μN supports a positive parity for the isomer, with a wave function dominated by a 2h-1p neutron excitation across the N=50 shell gap. The large isomer shift reveals an increase of the intruder isomer mean square charge radius with respect to that of the ground state, δ⟨rc2⟩79,79m=+0.204(6)  fm2, providing first evidence of shape coexistence.Collinear laser spectroscopy has been performed on the $^{79}_{30}$Zn$_{49}$ isotope at ISOLDE-CERN. The existence of a long-lived isomer with a few hundred milliseconds half-life was confirmed, and the nuclear spins and moments of the ground and isomeric states in $^{79}$Zn as well as the isomer shift were measured. From the observed hyperfine structures, spins $I = 9/2$ and $I = 1/2$ are firmly assigned to the ground and isomeric states. The magnetic moment $\mu$ ($^{79}$Zn) = $-$1.1866(10) $\mu_{\rm{N}}$, confirms the spin-parity $9/2^{+}$ with a $\nu g_{9/2}^{-1}$ shell-model configuration, in excellent agreement with the prediction from large scale shell-model theories. The magnetic moment $\mu$ ($^{79m}$Zn) = $-$1.0180(12) $\mu_{\rm{N}}$ supports a positive parity for the isomer, with a wave function dominated by a 2h-1p neutron excitation across the $N = 50$ shell gap. The large isomer shift reveals an increase of the intruder isomer mean square charge radius with respect to that of the ground state: $\delta \langle r^{2}_{c}\rangle^{79,79m}$ = +0.204(6) fm$^{2}$, providing first evidence of shape coexistence.arXiv:1604.03316oai:cds.cern.ch:21457532016-04-12
spellingShingle nucl-th
nucl-ex
Nuclear Physics - Experiment
Nuclear Physics - Theory
Yang, X.F.
Wraith, C.
Xie, L.
Babcock, C.
Billowes, J.
Bissell, M.L.
Blaum, K.
Cheal, B.
Flanagan, K.T.
Garcia Ruiz, R. F.
Gins, W.
Gorges, C.
Grob, L.K.
Heylen, H.
Kaufmann, S.
Kowalska, M.
Kraemer, J.
Malbrunot-Ettenauer, S.
Neugart, R.
Neyens, G.
Nörtershäuser, W.
Papuga, J.
Sánchez, R.
Yordanov, D.T.
Isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$Zn$_{49}$: signature of shape coexistence near $^{78}$Ni
title Isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$Zn$_{49}$: signature of shape coexistence near $^{78}$Ni
title_full Isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$Zn$_{49}$: signature of shape coexistence near $^{78}$Ni
title_fullStr Isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$Zn$_{49}$: signature of shape coexistence near $^{78}$Ni
title_full_unstemmed Isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$Zn$_{49}$: signature of shape coexistence near $^{78}$Ni
title_short Isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$Zn$_{49}$: signature of shape coexistence near $^{78}$Ni
title_sort isomer shift and magnetic moment of the long-lived 1/2$^{+}$ isomer in $^{79}_{30}$zn$_{49}$: signature of shape coexistence near $^{78}$ni
topic nucl-th
nucl-ex
Nuclear Physics - Experiment
Nuclear Physics - Theory
url https://dx.doi.org/10.1103/PhysRevLett.116.182502
https://dx.doi.org/10.1103/PhysRevLett.116.219901
http://cds.cern.ch/record/2145753
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