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Mass measurements for the Tz=-2 fp -shell nuclei Ti 40, Cr 44, Mn 46, Fe 48, Co 50, and Ni 52

  • C. Y. Fu
  • , Y. H. Zhang
  • , M. Wang
  • , X. H. Zhou
  • , Yu A. Litvinov
  • , K. Blaum
  • , H. S. Xu
  • , X. Xu
  • , P. Shuai
  • , Y. H. Lam
  • , R. J. Chen
  • , X. L. Yan
  • , X. C. Chen
  • , J. J. He
  • , S. Kubono
  • , M. Z. Sun
  • , X. L. Tu
  • , Y. M. Xing
  • , Q. Zeng
  • , X. Zhou
  • W. L. Zhan, S. Litvinov, G. Audi, T. Uesaka, T. Yamaguchi, A. Ozawa, B. H. Sun, Y. Sun, F. R. Xu
  • Chinese Academy of Sciences
  • University of Chinese Academy of Sciences
  • GSI Helmholtz Centre for Heavy Ion Research
  • Max Planck Institute for Nuclear Physics
  • Xi' An Jiaotong University
  • Beijing Normal University
  • Beijing Radiation Center
  • East China University of Technology
  • CNRS/IN2P3
  • RIKEN
  • Saitama University
  • University of Tsukuba
  • Shanghai Jiao Tong University
  • Peking University

Research output: Contribution to journalArticlepeer-review

Abstract

By using isochronous mass spectrometry at the experimental cooler storage ring in Lanzhou, China, masses of short-lived Cr44, Mn46, Fe48, Co50, and Ni52 were measured for the first time and the precision of the mass of Ti40 was improved by a factor of about 2. Relative precisions of δm/m=(1-2)×10-6 have been achieved. Details of the measurements and data analysis are given. The obtained masses are compared with the Atomic-Mass Evaluation 2016 and with theoretical model predictions. The new mass data enable us to extract the higher-order coefficients, d and e, of the quartic form of the isobaric multiplet mass equation for the fp-shell isospin quintets. Unexpectedly large d and e values for the A=44 quintet are found. By revisiting the previous experimental data on β-delayed protons from Cr44 decay, it is suggested that the observed anomaly could be due to the misidentification of the T=2, Jπ=0+ isobaric analog state in V44.

Original languageEnglish
Article number054311
JournalPhysical Review C
Volume102
Issue number5
DOIs
StatePublished - 9 Nov 2020

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