Superdeformation in $^{35}$S

ORAL

Abstract

Recent investigations of superdeformed bands have focused on the A$\sim$40 region. It was suggested that the $f_{7/2}$ intruder orbital is the driving force behind the onset of superdeformation in A$\sim$40, although this was not con firmed experimentally. The high-spin states in $^{35}$S were investigated using $^{26}$Mg($^{18}$O, 2 1n)$^{35}$S fusion evaporation reaction. A level scheme for $^{35}$S was deduced. The half-life of the transition in the band was estimated by measuring the residual Doppler shift. The deduced half-life shows the large collectivity of the band. The result indicates that the superdeformed band in $^{35}$S is associated with the excitations of nuclei to the $f_{7/2}$.

Authors

  • Shintaro Go

    • UTK/ORNL
    • CNS/University of Tennessee
  • Eiji Ideguchi

    • RCNP
  • Rin Yokoyama

    • CNS
  • Motoki Kobayashi

    • CNS
  • Keiichi Kisamori

    • CNS
  • Shinsuke Ota

    • CNS
  • Shinichiro Michimasa

    • CNS
  • Susumu Shimoura

    • CNS
  • Megumi Niikura

    • University of Tokyo
  • Ayumi Yagi

    • Osaka University
  • Hiroki Nishibata

    • Osaka University
  • Masahiko Sugawara

    • Chiba Institute of Technologgy
  • Mitsuo Koizumi

    • JAEA
  • Yosuke Toh

    • JAEA
  • Toshiyuki Shizuma

    • JAEA
  • Atsushi Kimura

    • JAEA
  • Hideo Harada

    • JAEA
  • Kazuyoshi Furutaka

    • JAEA
  • Shoji Nakamura

    • JAEA
  • Fumito Kitatani

    • JAEA
  • Yuichi Hatsukawa

    • JAEA
  • Iolanda Matea

    • IPNO
  • Daisuke Suzuki

    • IPNO
  • David Verney

    • IPNO
  • Faical Azaiez

    • IPNO