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Dynamical and statistical properties of hot nuclei

  • J. B. Natowitz
  • , M. Gonin
  • , K. Hagel
  • , R. Wada
  • , S. Shlomo
  • , X. Bin
  • , M. Gui
  • , Y. Lou
  • , D. Utley
  • , T. Botting
  • , R. K. Choudhury
  • , L. Cooke
  • , B. Hurst
  • , D. O'Kelly
  • , R. P. Schmitt
  • , W. Turmel
  • , H. Utsunomiya
  • , G. Nebbia
  • , D. Fabris
  • , J. A. Ruiz
  • G. Nardelli, M. Poggi, R. Zanon, G. Viesti, R. H. Burch, F. Gramegna, G. Prete, D. Drain, B. Chambon, B. Cheynis, D. Guinet, X. C. Hu, A. Demeyer, C. Pasteur, A. Giorni, A. Lleres, P. Stassi, B. Viano, A. Menchaca Rocha, M. E. Brandan, P. Gonthier
  • Cyclotron Institute
  • INFN
  • Università degli studi di Bari Aldo Moro
  • Laboratori Nazionali di Legnaro
  • Institut de Physique des 2 Infinis de Lyon
  • Laboratoire de Physique Subatomique et de Cosmologie de Grenoble
  • Universidad Nacional Autónoma de México
  • Hope College

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Properties of medium mass nuclei having excitation energies of 1.5 to 6 MeV/u have been probed in measurements of the multiplicities and energy spectra of emitted particles and fragments. The particle spectra indicate a progressive reduction of both the level density parameter, a, and the emission barriers as the excitation energy is increased. The evolution of the dominant de-excitation modes, observed with increasing excitation energy, is found to be qualitatively consistent with the predictions of statistical models. There is, however, evidence that dynamics may play an important role in fragment emission processes. At energies of 6 MeV/u multifragment emission is an important process. Varying theoretical models predict such multifragment events but differ in their predictions of the probability of such events.

langue originaleAnglais
Pages (de - à)263-274
Nombre de pages12
journalNuclear Physics A
Volume538
Numéro de publicationC
Les DOIs
étatPublié - 1 janv. 1992
Modification externeOui

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