Publication | Open Access
Event-by-Event Analysis of Proton-Induced Nuclear Multifragmentation: Determination of the Phase Transition Universality Class in a System with Extreme Finite-Size Constraints
61
Citations
24
References
2001
Year
Proton-induced Nuclear MultifragmentationEngineeringNuclear PhysicsContinuous Phase TransitionNuclear FragmentationEvent-by-event AnalysisPrompt EmissionLepton-nucleon ScatteringNuclear DecayPhysicsNuclear TheoryExtreme Finite-size ConstraintsNuclear EngineeringNatural SciencesParticle PhysicsApplied PhysicsNeutron ScatteringPercolation ModelMultiscale Modeling
A percolation model of nuclear fragmentation is used to interpret 10.2 GeV/c p+197Au multifragmentation data. Emphasis is put on finding signatures of a continuous nuclear matter phase transition in finite nuclear systems. Based on model calculations, corrections accounting for physical constraints of the fragment detection and sequential decay processes are derived. Strong circumstantial evidence for a continuous phase transition is found, and the values of two critical exponents, sigma = 0.5+/-0.1 and tau = 2.35+/-0.05, are extracted from the data. A critical temperature of T(c) = 8.3+/-0.2 MeV is found.
| Year | Citations | |
|---|---|---|
Page 1
Page 1