Comparative study of four reactions at onset of pre-equilibrium emission

The study of the emitted particles, comparing pre-equilibrium and thermal components, is a useful tool to examine the nuclear structure of emitters. Possible clustering effects, which may change the expected decay chain probability, could be highlighted on the competition between different reaction...

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Hauptverfasser: Cicerchia, Magda, Gramegna, Fabiana, Fabris, Daniela, Marchi, Tommaso, Cinausero, Marco, Mantovani, Giorgia, Degerlier, Meltem, Barlini, Sandro, Bini, Maurizio, Bruno, Mauro, Caciolli, Antonio, Camaiani, Alberto, Casini, Giovanni, Cieplicka-Orynczak, Natalia, Collazuol, Gianmaria, D’Agostino, Michela, Dell’Aquila, Daniele, Fornal, Bogdan, Frosin, Catalin, Gelli, Nicla, Gruyer, Diego, Kravchuk, Vladimir, Leoni, Silvia, Lombardo, Ivano, Mengoni, Daniele, Morelli, Luca, Olmi, Alessandro, Ottanelli, Pietro, Pasquali, Gabriele, Piantelli, Silvia, Poggi, Giacomo, Valdré, Simone
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Sprache:eng
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Zusammenfassung:The study of the emitted particles, comparing pre-equilibrium and thermal components, is a useful tool to examine the nuclear structure of emitters. Possible clustering effects, which may change the expected decay chain probability, could be highlighted on the competition between different reaction mechanisms. The NUCL-EX collaboration (INFN, Italy) has carried out an extensive research campaign on pre-equilibrium emission of light charged particles from hot nuclei. In this framework, the reactions 16 O+ 30 Si, 18 O+ 28 Si, 19 F+ 27 Al at 7 AMeV and 16 O+ 30 Si at 8 AMeV have been carried out using the GARFIELD+RCo array at Legnaro National Laboratories. Some anomalies in the α -particle emission channels have been evidenced in the measurement reported above, showing in an exclusive way the observed effects related to the entrance channels. The experimental results are compared to model prediction, for which the same filtering and complete event selection have been applied.
ISSN:2100-014X
2101-6275
2100-014X
DOI:10.1051/epjconf/201922301010