The emission probability of Intermediate Mass Fragments (IMFs) in non-central reactions has been investigated in collisions of heavy 124Xe projectiles with the two different medium-mass targets of 64Ni and 64Zn at the laboratory energy of 35 A MeV. The two colliding systems differ only for the target atomic number Z and, consequently, for the isospin N/Z ratio. The probability of IMFs emission from the projectile-like fragment has been measured, showing an enhancement of the IMFs emission for the neutron rich 64Ni target. Most of the observed projectile break-up yield is associated with the production of only one IMF, that is, a quasi-binary splitting of projectile in two fragments in a broad range of charge asymmetry. For the events with one IMF, the relative contributions of the dynamical and statistical emissions have been evaluated. We find an enhancement of dynamical break-up probability for the neutron rich target with respect to the neutron poor one. The analysis suggests influence of the target isospin in inducing the dynamical break-up of projectile-like fragments. The new data have been also compared with previous published results of 112 , 124Sn + 58 , 64Ni systems, in order to disentangle between isospin effects against system-size effects on the emission probability. The comparisons between previous and new data suggest that the dynamical break-up is determined by the N/Z content of both projectile and target; for the cases here investigated, the influence of the system size on the dynamical emission probability can be excluded.

Russotto, P., De Filippo, E., Pagano, E.v., Acosta, L., Auditore, L., Cap, T., et al. (2020). Dynamical versus statistical production of Intermediate Mass Fragments at Fermi Energies. THE EUROPEAN PHYSICAL JOURNAL. A, HADRONS AND NUCLEI, 56(1) [10.1140/epja/s10050-019-00011-z].

Dynamical versus statistical production of Intermediate Mass Fragments at Fermi Energies

Cardella, G.;Minniti, T.;Quattrocchi, L.;
2020-01-01

Abstract

The emission probability of Intermediate Mass Fragments (IMFs) in non-central reactions has been investigated in collisions of heavy 124Xe projectiles with the two different medium-mass targets of 64Ni and 64Zn at the laboratory energy of 35 A MeV. The two colliding systems differ only for the target atomic number Z and, consequently, for the isospin N/Z ratio. The probability of IMFs emission from the projectile-like fragment has been measured, showing an enhancement of the IMFs emission for the neutron rich 64Ni target. Most of the observed projectile break-up yield is associated with the production of only one IMF, that is, a quasi-binary splitting of projectile in two fragments in a broad range of charge asymmetry. For the events with one IMF, the relative contributions of the dynamical and statistical emissions have been evaluated. We find an enhancement of dynamical break-up probability for the neutron rich target with respect to the neutron poor one. The analysis suggests influence of the target isospin in inducing the dynamical break-up of projectile-like fragments. The new data have been also compared with previous published results of 112 , 124Sn + 58 , 64Ni systems, in order to disentangle between isospin effects against system-size effects on the emission probability. The comparisons between previous and new data suggest that the dynamical break-up is determined by the N/Z content of both projectile and target; for the cases here investigated, the influence of the system size on the dynamical emission probability can be excluded.
2020
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/07
Settore PHYS-06/A - Fisica per le scienze della vita, l'ambiente e i beni culturali
English
Con Impact Factor ISI
Russotto, P., De Filippo, E., Pagano, E.v., Acosta, L., Auditore, L., Cap, T., et al. (2020). Dynamical versus statistical production of Intermediate Mass Fragments at Fermi Energies. THE EUROPEAN PHYSICAL JOURNAL. A, HADRONS AND NUCLEI, 56(1) [10.1140/epja/s10050-019-00011-z].
Russotto, P; De Filippo, E; Pagano, Ev; Acosta, L; Auditore, L; Cap, T; Cardella, G; De Luca, S; Geraci, E; Gnoffo, B; Lanzalone, G; Lombardo, I; Maio...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/394855
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