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Axial and triaxial degrees of freedom in $^{72}$Zn

The unstable N=42 nucleus 72Zn has been studied using multiple safe Coulomb excitation in inverse kinematics. The experiment was performed at the REX-ISOLDE facility at CERN making first use of the silicon detector array C-REX in combination with the γ-ray spectrometer Miniball. The high angular cov...

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Autores principales: Hellgartner, S, Mücher, D, Wimmer, K, Bildstein, V, Egido, J L, Gernhäuser, R, Krücken, R, Nowak, A K, Zielinska, M, Bauer, C, Benito, M L L, Bottoni, S, De Witte, H, Elseviers, J, Fedorov, D, Flavigny, F, Illana, A, Klintefjord, M, Kröll, T, Lutter, R, Marsh, B, Orlandi, R, Pakarinen, J, Raabe, R, Rapisarda, E, Reichert, S, Reiter, P, Scheck, M, Seidlitz, M, Siebeck, B, Siesling, E, Steinbach, T, Stora, T, Vermeulen, M, Voulot, D, Warr, N, Wenander, F J C
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2023.137933
http://cds.cern.ch/record/2857870
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author Hellgartner, S
Mücher, D
Wimmer, K
Bildstein, V
Egido, J L
Gernhäuser, R
Krücken, R
Nowak, A K
Zielinska, M
Bauer, C
Benito, M L L
Bottoni, S
De Witte, H
Elseviers, J
Fedorov, D
Flavigny, F
Illana, A
Klintefjord, M
Kröll, T
Lutter, R
Marsh, B
Orlandi, R
Pakarinen, J
Raabe, R
Rapisarda, E
Reichert, S
Reiter, P
Scheck, M
Seidlitz, M
Siebeck, B
Siesling, E
Steinbach, T
Stora, T
Vermeulen, M
Voulot, D
Warr, N
Wenander, F J C
author_facet Hellgartner, S
Mücher, D
Wimmer, K
Bildstein, V
Egido, J L
Gernhäuser, R
Krücken, R
Nowak, A K
Zielinska, M
Bauer, C
Benito, M L L
Bottoni, S
De Witte, H
Elseviers, J
Fedorov, D
Flavigny, F
Illana, A
Klintefjord, M
Kröll, T
Lutter, R
Marsh, B
Orlandi, R
Pakarinen, J
Raabe, R
Rapisarda, E
Reichert, S
Reiter, P
Scheck, M
Seidlitz, M
Siebeck, B
Siesling, E
Steinbach, T
Stora, T
Vermeulen, M
Voulot, D
Warr, N
Wenander, F J C
author_sort Hellgartner, S
collection CERN
description The unstable N=42 nucleus 72Zn has been studied using multiple safe Coulomb excitation in inverse kinematics. The experiment was performed at the REX-ISOLDE facility at CERN making first use of the silicon detector array C-REX in combination with the γ-ray spectrometer Miniball. The high angular coverage of C-REX allowed to determine the reduced transition strengths for the decay of the yrast 01+, 21+ and 41+ as well as of the 02+ and 22+ states in 72Zn. The quadrupole moments of the 21+, 41+ and 22+ states were extracted. Using model independent quadrupole invariants, the ground state of 72Zn was found to have an average deformation in the γ degree of freedom close to maximum triaxiality. In comparison to experimental data in zinc isotopes with N<40, the collectivity of the 41+ state in neutron-rich 72Zn is significantly larger, indicating a collective yrast band based on the ground state of 72Zn. In contrast, a low experimental B(E2;02+→21+) strength was determined, indicating a different structure for the 02+ state. Shell-model calculations propose a 02+ state featuring a larger fraction of the (spherical) N=40 closed-shell configuration in its wave function than for the 01+ ground state. The results were also compared with beyond mean field calculations which corroborate the large deformation in the γ degree of freedom, while pointing to a more deformed 02+ state. These experimental and theoretical findings establish the importance of the γ degree of freedom in the ground state of 72Zn, located between the 68,70Ni nuclei that have spherical ground states, and 76Ge, which has a rigid triaxial shape.
id cern-2857870
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28578702023-05-05T18:57:09Zdoi:10.1016/j.physletb.2023.137933http://cds.cern.ch/record/2857870engHellgartner, SMücher, DWimmer, KBildstein, VEgido, J LGernhäuser, RKrücken, RNowak, A KZielinska, MBauer, CBenito, M L LBottoni, SDe Witte, HElseviers, JFedorov, DFlavigny, FIllana, AKlintefjord, MKröll, TLutter, RMarsh, BOrlandi, RPakarinen, JRaabe, RRapisarda, EReichert, SReiter, PScheck, MSeidlitz, MSiebeck, BSiesling, ESteinbach, TStora, TVermeulen, MVoulot, DWarr, NWenander, F J CAxial and triaxial degrees of freedom in $^{72}$ZnNuclear Physics - TheoryThe unstable N=42 nucleus 72Zn has been studied using multiple safe Coulomb excitation in inverse kinematics. The experiment was performed at the REX-ISOLDE facility at CERN making first use of the silicon detector array C-REX in combination with the γ-ray spectrometer Miniball. The high angular coverage of C-REX allowed to determine the reduced transition strengths for the decay of the yrast 01+, 21+ and 41+ as well as of the 02+ and 22+ states in 72Zn. The quadrupole moments of the 21+, 41+ and 22+ states were extracted. Using model independent quadrupole invariants, the ground state of 72Zn was found to have an average deformation in the γ degree of freedom close to maximum triaxiality. In comparison to experimental data in zinc isotopes with N<40, the collectivity of the 41+ state in neutron-rich 72Zn is significantly larger, indicating a collective yrast band based on the ground state of 72Zn. In contrast, a low experimental B(E2;02+→21+) strength was determined, indicating a different structure for the 02+ state. Shell-model calculations propose a 02+ state featuring a larger fraction of the (spherical) N=40 closed-shell configuration in its wave function than for the 01+ ground state. The results were also compared with beyond mean field calculations which corroborate the large deformation in the γ degree of freedom, while pointing to a more deformed 02+ state. These experimental and theoretical findings establish the importance of the γ degree of freedom in the ground state of 72Zn, located between the 68,70Ni nuclei that have spherical ground states, and 76Ge, which has a rigid triaxial shape.oai:cds.cern.ch:28578702023
spellingShingle Nuclear Physics - Theory
Hellgartner, S
Mücher, D
Wimmer, K
Bildstein, V
Egido, J L
Gernhäuser, R
Krücken, R
Nowak, A K
Zielinska, M
Bauer, C
Benito, M L L
Bottoni, S
De Witte, H
Elseviers, J
Fedorov, D
Flavigny, F
Illana, A
Klintefjord, M
Kröll, T
Lutter, R
Marsh, B
Orlandi, R
Pakarinen, J
Raabe, R
Rapisarda, E
Reichert, S
Reiter, P
Scheck, M
Seidlitz, M
Siebeck, B
Siesling, E
Steinbach, T
Stora, T
Vermeulen, M
Voulot, D
Warr, N
Wenander, F J C
Axial and triaxial degrees of freedom in $^{72}$Zn
title Axial and triaxial degrees of freedom in $^{72}$Zn
title_full Axial and triaxial degrees of freedom in $^{72}$Zn
title_fullStr Axial and triaxial degrees of freedom in $^{72}$Zn
title_full_unstemmed Axial and triaxial degrees of freedom in $^{72}$Zn
title_short Axial and triaxial degrees of freedom in $^{72}$Zn
title_sort axial and triaxial degrees of freedom in $^{72}$zn
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1016/j.physletb.2023.137933
http://cds.cern.ch/record/2857870
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