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Resonance States of Hydrogen Nuclei 4H and 5H Obtained in Transfer Reactions with Exotic Beams

  • G. M. Ter-Akopian*
  • , D. D. Bogdanov
  • , A. S. Fomichev
  • , M. S. Golovkov
  • , Yu Ts Oganessian
  • , A. M. Rodin
  • , S. I. Sidorchuk
  • , R. S. Slepnev
  • , S. V. Stepantsov
  • , R. Wolski
  • , V. A. Gorshkov
  • , M. L. Chelnokov
  • , A. A. Korsheninnikov
  • , E. Yu Nikolski
  • , I. Tanihata
  • , F. Hanappe
  • , T. Materna
  • , L. Stuttge
  • , A. H. Ninane
  • *Corresponding author for this work
  • Joint Institute for Nuclear Research
  • Polish Academy of Sciences
  • RIKEN
  • Université libre de Bruxelles
  • Université de Strasbourg
  • Université catholique de Louvain

Research output: Contribution to journalArticlepeer-review

Abstract

To investigate 5H resonance states with a better instrumental resolution, we utilized the two-neutron transfer reaction 3H(t, p)5H accomplished with the use of a cryogenic liquid-tritium target and 57.5-MeV triton beam. As a result of this study, a valuable fraction of protons detected at θlab = 18°-32° in ptn coincidence events was attributed to the states of the 5H nucleus. Two resonance states situated at 1.8 plusmn; 0.1 and 2.7 ± 0.1 MeV above the t + n + n decay threshold were obtained in the missing mass energy spectrum of the 5H nucleus. The peak located close to E5H = 1.8 MeV was clearly seen in the H spectrum obtained from the energy distributions of 3H nuclei emitted in the reaction 2H(6He, 5H)3He at θ lab = 17°-32°. The width (Γobs ≤ 0.5 MeV) obtained for the two 5H resonance states is surprisingly small. A state of 4H with Eres = 3.3 MeV and γ2 = 2.3 MeV was obtained in the reaction 2H(t, p)4H from the spectra of protons leaving the target at θlab = 18°-32° and detected in coincidence with neutrons emitted in the decay of 4H nuclei.

Original languageEnglish
Pages (from-to)1544-1551
Number of pages8
JournalPhysics of Atomic Nuclei
Volume66
Issue number8
DOIs
StatePublished - Aug 2003
Externally publishedYes

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