arXiv:1305.1517·v1·Nuclear Experiment
Constrained caloric curves and phase transition for hot nuclei
Bernard Borderie (IPNO)🇫🇷 · S. Piantelli (INFN, Sezione di Firenze)🇮🇹 · M. F. Rivet (IPNO)🇫🇷 · Ad. R. Raduta (NIPNE)🇷🇴 · G. Ademard (IPNO)🇫🇷 · E. Bonnet (GANIL)🇫🇷 · R. Bougault (LPCC)🇫🇷 · A. Chbihi (GANIL)🇫🇷 · J. D. Frankland (GANIL)🇫🇷 · E. Galichet (IPNO, CNAM Paris)🇫🇷 · D. Gruyer (GANIL)🇫🇷 · D. Guinet (IPNL)🇫🇷
Abstract
Simulations based on experimental data obtained from multifragmenting quasi-fused nuclei produced in central Xe + Sn collisions have been used to deduce event by event freeze-out properties in the thermal excitation energy range 4-12 AMeV [Nucl. Phys. A809 (2008) 111]. From these properties and the temperatures deduced from proton transverse momentum fluctuations, constrained caloric curves have been built. At constant average volumes caloric curves exhibit a monotonic behaviour whereas for constrained pressures a backbending is observed. Such results support the existence of a first order phase transition for hot nuclei.
Comments: 14 pages, 5 figures, accepted in Physics Letters B