Finite size effects and the order of a phase transition in fragmenting nuclear systems
arXiv:nucl-th/9910061 · doi:10.1103/PhysRevC.61.037304
Abstract
We discuss the implications of finite size effects on the determination of the order of a phase transition which may occur in infinite systems. We introduce a specific model to which we apply different tests. They are aimed to characterise the smoothed transition observed in a finite system. We show that the microcanonical ensemble may be a useful framework for the determination of the nature of such transitions.
LateX, 5 pages, 5 figures; Fig. 1 changed
Cited by in corpus (8)
- Microscopic model approaches to fragmentation of nuclei and phase transitions in nuclear matter
- Transient backbending behavior in the Ising model with fixed magnetization
- Non equilibrium effects in fragmentation
- Order parameter fluctuations and thermodynamic phase transitions in finite spin systems and fragmenting nuclei
- Time dependence of critical behavior in multifragmentation
- Caloric Curves for small systems in the Nuclear Lattice Gas Model
- Comment on "Negative heat capacities and first order phase transitions in nuclei" by L.G. Moretto et al
- Equation of State and Phase Transitions in the Nuclear and Hadronic Systems