Conceptual

Isospin and Equation-of-State Effects on the Nuclear Liquid-Gas Phase Transition in the Canonical Thermodynamical Model

How isospin asymmetry and the choice of realistic nuclear equation of state shape the multiplicity-derivative and specific-heat signatures of the liquid-gas phase transition in finite nuclei, computed within the Canonical Thermodynamical Model with a semi-microscopic cluster functional. Establishes that the transition temperature is EoS-sensitive but nearly isospin-independent.