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Observation of a minimum in collective flow for Ar+V collisions

  • D. Krofcheck
  • , D. A. Cebra
  • , M. Cronqvist
  • , R. Lacey
  • , T. Li
  • , C. A. Ogilvie
  • , A. Vander Molen
  • , K. Tyson
  • , G. D. Westfall
  • , W. K. Wilson
  • , J. S. Winfield
  • , A. Nadasen
  • , E. Norbeck
  • National Science Foundation
  • University of Michigan, Dearborn
  • University of Iowa

Research output: Contribution to journalArticlepeer-review

49 Scopus citations

Abstract

We have added a new measurement at 100 MeV/nucleon to our previous excitation function for collective flow of light fragments from Ar40+51V collisions. In the earlier work, flow decreased as the beam energy was raised from 45 to 85 MeV/nucleon. This provided hints to the disappearance of flow, but the lack of measurements at higher beam energies precluded the observation of the reappearance of flow. At a beam energy of 100 MeV/nucleon the flow has reappeared and this allows an experimental determination of the region where attractive scattering balances with repulsive scattering in these collisions. A simultaneous least-squares fit of the flow data for light fragments yields (8510) MeV/nucleon for the balance energy.

Original languageEnglish
Pages (from-to)350-352
Number of pages3
JournalPhysical Review C - Nuclear Physics
Volume43
Issue number1
DOIs
StatePublished - 1991

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