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Light-particle evaporation as a function of neutron excess for medium-mass compound nuclei with Ex ≈ 2 MeV/u

  • Y. Lou
  • , M. Gonin
  • , R. Wada
  • , K. Hagel
  • , J. Li
  • , B. Xiao
  • , M. Gui
  • , D. Utley
  • , R. Tezkratt
  • , L. Cooke
  • , T. Botting
  • , B. Hurst
  • , D. O'Kelly
  • , G. Mouchaty
  • , R. P. Schmitt
  • , W. Turmel
  • , J. B. Natowitz
  • , D. Fabris
  • , G. Nebbia
  • , G. Viesti
  • J. Ruiz, B. Burch, F. Gramegna, M. Poggi, G. Prete, M. E. Brandan, A. Menchaca-Rocha
  • Cyclotron Institute
  • University of Padova
  • Laboratori Nazionali di Legnaro
  • Universidad Nacional Autónoma de México

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

9 Citations (Scopus)

Résumé

Light-particle emission from the fission reactions of 63Cu + 92,100Mo and 20Ne + 144,148,154Sm has been studied using the Texas A&M Neutron Ball detector. Linearmomentuum transfers (LMT) were determined from fission-fragment-folding-angle measurements. An increase of neutron multiplicity with apparent linear-momentum transfer was seen. The initial excitation energies of the compound nuclei are estimated from the observed linear-momentum transfer and also reconstructed from the measured multiplicities and average energies of neutrons, protons and α-particles. The results of the two methods are in good agreement. The observed neutron multiplicities show a strong increase with increasing neutron-to-proton ratio of the composite system. The light-particle multiplicities are compared with calculated values using the statistical code GEMINI. The effect of the dynamic fission delay on the total light-particle multiplicities is explored and found to be small.

langue originaleAnglais
Pages (de - à)373-396
Nombre de pages24
journalNuclear Physics A
Volume581
Numéro de publication2
Les DOIs
étatPublié - 9 janv. 1995
Modification externeOui

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