Multifragmentation of the remnant produced in the reaction of [Formula Presented] GeV gold with carbon
- J. A. Hauger(corresponding author),
- P. Warren,
- S. Albergo,
- F. Bieser,
- F. P. Brady,
- Z. Caccia
- Purdue University,
- National Institute for Nuclear Physics,
- Lawrence Berkeley National Laboratory,
- University of California at Davis,
- Texas A&M University,
- Kent State University
Abstract
A high-statistics exclusive study of the multifragmentation of [Formula Presented] GeV gold on carbon has been performed. Particles with [Formula Presented] show evidence of emission in a first prompt stage as well as in a second equilibrium stage whereas fragments with [Formula Presented] appear to be emitted essentially only in the second stage. Two methods for the separation of the [Formula Presented] particles into the two stages are given and they are in agreement. The yields for each stage are determined as a function of the event charged particle multiplicity [Formula Presented]. The mass, nuclear charge, excitation energy per nucleon, and temperature of the remnant left after the first stage and their fluctuations have been determined as a function of [Formula Presented]. The expansion of the remnant to fragment freeze-out is examined. The freeze-out temperature is determined from double isotope ratios as a function of [Formula Presented] and isentropic trajectories are obtained in the temperature-density plane. The caloric curve shows a monotonic increase with excitation energy. Some of the energy is in the form of radial flow. Overall, the results are consistent with a previous statistical analysis of the data which suggests that, over a certain range of excitation energies, multifragmentation involves a continuous phase transition.
Publication Information
Output type
Original language
English (US)Pages from-to (Number of pages)
Pages 764-783 (20 pages)Journal (Volume, Issue Number)
Physical Review C - Nuclear Physics (Volume 57, Issue 2)Publication milestones
- Published - 1998
Publication status
ISSN
0556-2813Publication IDs
- Scopus: 0032341261
