Dynamics of the Multifragmentation of 1AGeV Gold on Carbon
- 8 July 1996
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review Letters
- Vol. 77 (2) , 235-238
- https://doi.org/10.1103/physrevlett.77.235
Abstract
An exclusive study of the interaction of 1A GeV Au with C shows a separability into two stages: a prompt stage involving emission of most and some particles and a second stage involving the decay of an equilibrated remnant, which typically undergoes multifragmentation. The mean mass, charge, excitation energy, and the initial temperature of the remnant have been determined as a function of the total charge multiplicity, , as has the freeze-out temperature . Both and increase linearly with and their values at the critical point have been determined. rises monotonically with excitation energy as expected for a continuous phase transition.
Keywords
This publication has 21 references indexed in Scilit:
- Heated Nuclear Matter, Condensation Phenomena, and the Hadronic Equation of StatePhysical Review Letters, 1995
- Multifragmentation in the 4.8-GeVHeAg,Au ReactionsPhysical Review Letters, 1995
- Determination of Critical Exponents from the Multifragmentation of Gold NucleiPhysical Review Letters, 1994
- Statistical fragmentation of Au projectiles atE/A=600 MeVPhysical Review C, 1992
- Rapid massive cluster formationPhysical Review C, 1990
- A TPC detector for the study of high multiplicity heavy ion collisionsIEEE Transactions on Nuclear Science, 1990
- Approach to criticality in the fragmentation of xenon by 1–19 GeV protonsPhysical Review C, 1989
- A multiple sampling ionization chamber (MUSIC) for measuring the charge of relativistic heavy ionsNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1987
- Experimental results from high energy proton-nucleus interactions, critical phenomena, and the thermal liquid drop model of fragment productionPhysical Review C, 1984
- Fragment Production in the Interaction of 5.5-GeV Protons with UraniumPhysical Review C, 1971