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Comparison of midvelocity fragment formation with projectilelike decay

  • S. Hudan
  • , R. Alfaro
  • , B. Davin
  • , Y. Larochelle
  • , H. Xu
  • , L. Beaulieu
  • , T. Lefort
  • , R. Yanez
  • , R. T. De Souza
  • , R. J. Charity
  • , L. G. Sobotka
  • , T. X. Liu
  • , X. D. Liu
  • , W. G. Lynch
  • , R. Shomin
  • , W. P. Tan
  • , M. B. Tsang
  • , A. Vander Molen
  • , A. Wagner
  • , H. F. Xi

Research output: Contribution to journalArticlepeer-review

Abstract

The characteristics of intermediate mass fragments (IMFs: 3≤Z≤20) produced in midperipheral and central collisions are compared. We compare IMFs detected at midvelocity with those evaporated from the excited projectilelike fragment (PLF*). On average, the IMFs produced at midvelocity are larger in atomic number, exhibit broader transverse velocity distributions, and are more neutron rich as compared to IMFs evaporated from the PLF*. These characteristics of midvelocity fragments are consistent with the low-density formation of the fragments. We present in the different kinematical regions studied, the for isotopically identified IMFs. For a given Z, is either constant or decreases slightly with increasing A, in contradiction with a mass-dependent collective expansion in which all IMFs are emitted on average at the same time. Neutron-deficient isotopes of even Z elements manifest higher kinetic energies than heavier isotopes of the same element for both PLF* and midvelocity emission. This result may be because of the charged-particle decay of long-lived excited states.

Original languageEnglish
Article number054604
JournalPhysical Review C - Nuclear Physics
Volume71
Issue number5
DOIs
StatePublished - May 2005

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