Negative heat capacity for hot nuclei using formulation from the microcanonical ensemble INDRA Collaboration
nucl-ex
/ Authors
B. Borderie, S. Piantelli, E. Bonnet, R. Bougault, A. Chbihi, J. E. Ducret, J. D. Frankland, E. Galichet, D. Gruyer, M. Henri
and 8 more authors
M. La Commara, N. Le Neindre, I. Lombardo, O. Lopez, L. Manduci, M. Parlog, R. Roy, G. Verde. M. Vigilante
/ Abstract
By using freeze-out properties of multifragmenting hot nuclei produced in quasifusion central $^{129}$Xe+$^{nat}$Sn collisions at different beam energies (32, 39, 45 and 50 AMeV) which were estimated by means of a simulation based on experimental data collected by the $4π$ INDRA multidetector, heat capacity in the thermal excitation energy range 4 - 12.5 AMeV was calculated from total kinetic energies and multiplicities at freeze-out. The microcanonical formulation was employed. Negative heat capacity which signs a first order phase transition for finite systems is observed and confirms previous results using a different method.