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Evolution of proton single-particle states in neutron-rich Sb isotopes beyond N=82

  • A. Jungclaus
  • , J. M. Keatings
  • , G. S. Simpson
  • , H. Naïdja
  • , A. Gargano
  • , S. Nishimura
  • , P. Doornenbal
  • , G. Gey
  • , G. Lorusso
  • , P. A. Söderström
  • , T. Sumikama
  • , J. Taprogge
  • , Z. Y. Xu
  • , H. Baba
  • , F. Browne
  • , N. Fukuda
  • , N. Inabe
  • , T. Isobe
  • , H. S. Jung
  • , D. Kameda
  • G. D. Kim, Y. K. Kim, I. Kojouharov, T. Kubo, N. Kurz, Y. K. Kwon, Z. Li, H. Sakurai, H. Schaffner, Y. Shimizu, H. Suzuki, H. Takeda, Z. Vajta, H. Watanabe, J. Wu, A. Yagi, K. Yoshinaga, S. Bönig, J. M. Daugas, R. Gernhaüser, S. Ilieva, T. Kröll, A. Montaner-Piza, K. Moschner, D. Mücher, H. Nishibata, A. Odahara, R. Orlandi, M. Scheck, K. Steiger, A. Wendt
  • Instituto de Estructura de la Materia (IEM-CSIC)
  • University of the West of Scotland
  • Laboratoire de Physique Subatomique et de Cosmologie Grenoble (LPSC)
  • Université Mentouri
  • INFN Sezione di Napoli
  • Riken
  • Institut Laue-Langevin
  • Tohoku University
  • Universidad Autónoma de Madrid
  • University of Brighton
  • Chung-Ang University
  • Institute for Basic Science, Daejeon
  • Hanyang University
  • GSI Helmholtz Center
  • Beijing University
  • University of Tokyo
  • Institute for Nuclear Research (MTA-ATOMKI)
  • Osaka University
  • Tokyo University of Science
  • Technische Universität Darmstadt
  • CEA
  • Technical University of Munich
  • University of Valencia
  • Universität zu Köln
  • Japan Atomic Energy Agency

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

The β decay of the semimagic Sn isotopes Sn136,137,138 has been studied at the Radioactive Isotope Beam Factory at the RIKEN Nishina Center. The first experimental information on excited states was obtained for Sb137 while, in the case of Sb136, the established excitation scheme could be extended by ten previously unidentified levels. In the decay of the most-neutron-rich isotope Sn138, two γ rays were observed for the first time. The new experimental results, in combination with state-of-the-art shell-model calculations, provide the first information with respect to the evolution of the 0g7/2 and 1d5/2 proton single-particle states with increasing neutron number beyond N=84.

Original languageEnglish
Article number034324
JournalPhysical Review C
Volume102
Issue number3
DOIs
StatePublished - Sep 2020

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