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Phase transition dynamics for hot nuclei (CROSBI ID 274545)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

(INDRA Collaboration) Borderie, B. ; Le Neindre, N. ; Rivet, M.F. ; Désesquelles, P. ; Bonnet, E. ; Bougault, R. ; Chbihi, A. ; Dell'Aquila, Daniele ; Fable, Q. ; Frankland, J.D. et al. Phase transition dynamics for hot nuclei // Physics letters. B, 782 (2018), 291-296. doi: 10.1016/j.physletb.2018.05.040

Podaci o odgovornosti

Borderie, B. ; Le Neindre, N. ; Rivet, M.F. ; Désesquelles, P. ; Bonnet, E. ; Bougault, R. ; Chbihi, A. ; Dell'Aquila, Daniele ; Fable, Q. ; Frankland, J.D. ; Galichet, E. ; Gruyer, D. ; Guinet, D. ; La Commara, M. ; Lombardo, I. ; Lopez, O. ; Manduci, L. ; Napolitani, P. ; Pârlog, M. ; Rosato, E. ; Roy, R. ; St-Onge, P. ; Verde, G. ; Vient, E. ; Vigilante, M. ; Wieleczko, J.P.

INDRA Collaboration

engleski

Phase transition dynamics for hot nuclei

An abnormal production of events with almost equal-sized fragments was theoretically proposed as a signature of spinodal instabilities responsible for nuclear multifragmentation in the Fermi energy domain. On the other hand finite size effects are predicted to strongly reduce this abnormal production. High statistics quasifusion hot nuclei produced in central collisions between Xe and Sn isotopes at 32 and 45 A MeV incident energies have been used to definitively establish, through the experimental measurement of charge correlations, the presence of spinodal instabilities. N/Z influence was also studied.

Nuclear Thermodynamics , ; Heavy ion collisions ; Isospin

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Podaci o izdanju

782

2018.

291-296

objavljeno

0370-2693

1873-2445

10.1016/j.physletb.2018.05.040

Povezanost rada

Fizika

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