Publication | Open Access
Bimodality: A Sign of Critical Behavior in Nuclear Reactions
32
Citations
15
References
2008
Year
EngineeringNuclear PhysicsMolecular BiologyComputational ChemistryMolecular DynamicsHeavy Ion PhysicCoexistence RegionHeavy-ion PhysicsNucleationCritical BehaviorHeavy Ion ReactionsMolecular KineticsBiophysicsHigh-energy Nuclear ReactionPhysicsPhysical ChemistrySubcriticalityQuantum ChemistryNatural SciencesApplied PhysicsEquilibrium ThermodynamicsCriticalityChemical KineticsMolecular FragmentationIon Structure
The recently discovered coexistence of multifragmentation and residue production for the same total transverse energy of light charged particles, which has been dubbed bimodality like it has been introduced in the framework of equilibrium thermodynamics, can be well reproduced in numerical simulations of heavy ion reactions. A detailed analysis shows that fluctuations (introduced by elementary nucleon-nucleon collisions) determine which of the exit states is realized. Thus, we can identify bifurcation in heavy ion reactions as a critical phenomenon. Also the scaling of the coexistence region with beam energy is well reproduced in these results from the quantum molecular dynamics simulation program.
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