Fragment partitions of fragmenting hot nuclei produced in central and semiperipheral collisions have been compared in the excitation energy region 4-10 MeV per nucleon where radial collective expansion takes place. It is shown that, for a given total excitation energy per nucleon, the amount of radial collective energy fixes the mean fragment multiplicity. It is also shown that, at a given total excitation energy per nucleon, the different properties of fragment partitions are completely determined by the reduced fragment multiplicity (i.e., normalized to the source size). Freeze-out volumes seem to play a role in the scalings observed.
New scaling in nuclear fragmentation / E., Bonnet; B., Borderie; N., Le Neindre; Raduta, A. d. R.; M. F., Rivet; R., Bougault; A., Chbihi; J. D., Frankland; E., Galichet; F., Gagnon Moisan; D., Guinet; P., Lautesse; J., Łukasik; P., Marini; M., Pârlog; Rosato, Elio; R., Roy; Spadaccini, Giulio; Vigilante, Mariano; J. P., Wieleczko; B., Zwieglinski. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - STAMPA. - 108:14(2010), pp. 142701-1-142701-4. [10.1103/PhysRevLett.105.142701]
New scaling in nuclear fragmentation
ROSATO, ELIO;SPADACCINI, GIULIO;VIGILANTE, MARIANO;
2010
Abstract
Fragment partitions of fragmenting hot nuclei produced in central and semiperipheral collisions have been compared in the excitation energy region 4-10 MeV per nucleon where radial collective expansion takes place. It is shown that, for a given total excitation energy per nucleon, the amount of radial collective energy fixes the mean fragment multiplicity. It is also shown that, at a given total excitation energy per nucleon, the different properties of fragment partitions are completely determined by the reduced fragment multiplicity (i.e., normalized to the source size). Freeze-out volumes seem to play a role in the scalings observed.File | Dimensione | Formato | |
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