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(97)(37)Rb(60): The Cornerstone of the Region of Deformation around A ∼ 100 [corrected].

Identifieur interne : 002741 ( PubMed/Curation ); précédent : 002740; suivant : 002742

(97)(37)Rb(60): The Cornerstone of the Region of Deformation around A ∼ 100 [corrected].

Auteurs : C. Sotty [France] ; M. Zieli Ska [Pologne] ; G. Georgiev [France] ; D L Balabanski [Roumanie] ; A E Stuchbery [Australie] ; A. Blazhev [Allemagne] ; N. Bree [Belgique] ; R. Chevrier [France] ; S. Das Gupta [Italie] ; J M Daugas [France] ; T. Davinson [Royaume-Uni] ; H. De Witte [Belgique] ; J. Diriken [Belgique] ; L P Gaffney [Belgique] ; K. Geibel [Allemagne] ; K. Hady Ska-Kl K [Pologne] ; F G Kondev [États-Unis] ; J. Konki [Suisse] ; T. Kröll [Allemagne] ; P. Morel [France] ; P. Napiorkowski [Pologne] ; J. Pakarinen [Suisse] ; P. Reiter [Allemagne] ; M. Scheck [Allemagne] ; M. Seidlitz [Allemagne] ; B. Siebeck [Allemagne] ; G. Simpson [France] ; H. Törnqvist [Suisse] ; N. Warr [Allemagne] ; F. Wenander [Suisse]

Source :

RBID : pubmed:26551106

Abstract

Excited states of the neutron-rich nuclei (97,99)Rb were populated for the first time using the multistep Coulomb excitation of radioactive beams. Comparisons of the results with particle-rotor model calculations provide clear identification for the ground-state rotational band of (97)Rb as being built on the πg(9/2) [431] 3/2(+) Nilsson-model configuration. The ground-state excitation spectra of the Rb isotopes show a marked distinction between single-particle-like structures below N=60 and rotational bands above. The present study defines the limits of the deformed region around A∼100 and indicates that the deformation of (97)Rb is essentially the same as that observed well inside the deformed region. It further highlights the power of the Coulomb-excitation technique for obtaining spectroscopic information far from stability. The (99)Rb case demonstrates the challenges of studies with very short-lived postaccelerated radioactive beams.

DOI: 10.1103/PhysRevLett.115.172501
PubMed: 26551106

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<title xml:lang="en">(97)(37)Rb(60): The Cornerstone of the Region of Deformation around A ∼ 100 [corrected].</title>
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<div type="abstract" xml:lang="en">Excited states of the neutron-rich nuclei (97,99)Rb were populated for the first time using the multistep Coulomb excitation of radioactive beams. Comparisons of the results with particle-rotor model calculations provide clear identification for the ground-state rotational band of (97)Rb as being built on the πg(9/2) [431] 3/2(+) Nilsson-model configuration. The ground-state excitation spectra of the Rb isotopes show a marked distinction between single-particle-like structures below N=60 and rotational bands above. The present study defines the limits of the deformed region around A∼100 and indicates that the deformation of (97)Rb is essentially the same as that observed well inside the deformed region. It further highlights the power of the Coulomb-excitation technique for obtaining spectroscopic information far from stability. The (99)Rb case demonstrates the challenges of studies with very short-lived postaccelerated radioactive beams.</div>
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<Title>Physical review letters</Title>
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<ArticleTitle>(97)(37)Rb(60): The Cornerstone of the Region of Deformation around A ∼ 100 [corrected].</ArticleTitle>
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<AbstractText>Excited states of the neutron-rich nuclei (97,99)Rb were populated for the first time using the multistep Coulomb excitation of radioactive beams. Comparisons of the results with particle-rotor model calculations provide clear identification for the ground-state rotational band of (97)Rb as being built on the πg(9/2) [431] 3/2(+) Nilsson-model configuration. The ground-state excitation spectra of the Rb isotopes show a marked distinction between single-particle-like structures below N=60 and rotational bands above. The present study defines the limits of the deformed region around A∼100 and indicates that the deformation of (97)Rb is essentially the same as that observed well inside the deformed region. It further highlights the power of the Coulomb-excitation technique for obtaining spectroscopic information far from stability. The (99)Rb case demonstrates the challenges of studies with very short-lived postaccelerated radioactive beams.</AbstractText>
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<Affiliation>Department of Physics, University of Jyväskylä, P.O. Box 35, FI-40014 University of Jyväskylä, Finland.</Affiliation>
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