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Discovery and investigation of heavy neutron-rich isotopes with time-resolved Schottky spectrometry in the element range from thallium to actinium

  • L. Chen
  • , W. R. Plaß
  • , H. Geissel*
  • , R. Knöbel
  • , C. Kozhuharov
  • , Yu A. Litvinov
  • , Z. Patyk
  • , C. Scheidenberger
  • , K. Siegień-Iwaniuk
  • , B. Sun
  • , H. Weick
  • , K. Beckert
  • , P. Beller
  • , F. Bosch
  • , D. Boutin
  • , L. Caceres
  • , J. J. Carroll
  • , D. M. Cullen
  • , I. J. Cullen
  • , B. Franzke
  • J. Gerl, M. Górska, G. A. Jones, A. Kishada, J. Kurcewicz, S. A. Litvinov, Z. Liu, S. Mandal, F. Montes, G. Münzenberg, F. Nolden, T. Ohtsubo, Zs Podolyák, R. Propri, S. Rigby, N. Saito, T. Saito, M. Shindo, M. Steck, P. Ugorowski, P. M. Walker, S. Williams, M. Winkler, H. J. Wollersheim, T. Yamaguchi
*Corresponding author for this work
  • Justus Liebig University Giessen
  • United States Department of Energy
  • GSI Helmholtz Centre for Heavy Ion Research
  • Max Planck Institute for Nuclear Physics
  • Andrzej Soltan Institute for Nuclear Studies
  • Youngstown State University
  • University of Manchester
  • University of Surrey
  • Michigan State University
  • Niigata University
  • The University of Tokyo
  • Saitama University

Research output: Contribution to journalArticlepeer-review

Abstract

238U projectile fragments have been created at the entrance of the fragment separator FRS, spatially separated in flight within 0.45 μs and injected into the storage-cooler ring ESR at 7.9 Tm corresponding to about 70% light velocity. Accurate new mass values and lifetime information of the stored exotic nuclei in the element range from platinum to uranium have been obtained with single-particle Schottky spectrometry. In this experiment the new isotopes of 236Ac, 224At, 221Po, 222Po, and 213Tl were discovered. The isotopes were unambiguously identified and their masses measured. In addition, the time-correlated data have provided information on the lifetime of the new nuclides. The discovery of isotopes along with accurate mass measurement has been achieved for the first time at the FRS-ESR facility. The results will contribute to the knowledge of the decay products from the r-process nuclei and enable a crucial test of the predictive power of modern nuclear mass and half-life models.

Original languageEnglish
Pages (from-to)234-237
Number of pages4
JournalPhysics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics
Volume691
Issue number5
DOIs
StatePublished - Aug 2010

Keywords

  • A>200
  • Binding energies
  • Half-lives
  • New isotopes
  • Schottky mass spectrometry
  • Stored exotic nuclei

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