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Direct and compound-nucleus reaction mechanisms in theBe7+Ni58system at near-barrier energies

Authors :
V. Soukeras
Efstathios Stiliaris
C. Mazzocchi
F. Soramel
R. Silvestri
M. Mazzocco
A. Boiano
Ismael Martel
A. Guglielmetti
C. Boiano
C. Signorini
L. Stroe
V. V. Parkar
J. A. Lay
N. Keeley
K. Rusek
L. Acosta
C. Parascandolo
M. La Commara
M. Sandoli
T. Glodariu
A. Pakou
D. Torresi
E. Strano
K. Zerva
O. Sgouros
A. M. Sánchez-Benítez
D. Pierroutsakou
P. Molini
M. Romoli
Source :
Physical Review C. 92
Publication Year :
2015
Publisher :
American Physical Society (APS), 2015.

Abstract

The energy and angular distributions of $^{3}\mathrm{He}$ and $^{4}\mathrm{He}$ ions produced in the $^{7}\mathrm{Be}\phantom{\rule{4pt}{0ex}}+\phantom{\rule{4pt}{0ex}}^{58}\mathrm{Ni}$ reaction at a bombarding energy of 22 MeV have been measured for the first time. The yield of the heavier helium isotope was four to five times more abundant than that of its lighter counterpart, ruling out the possibility that in this energy range the $^{7}\mathrm{Be}$ reaction dynamics is dominated by the exclusive breakup process $^{7}\mathrm{Be}\phantom{\rule{4pt}{0ex}}\ensuremath{\rightarrow}{\phantom{\rule{4pt}{0ex}}}^{3}\mathrm{He}\phantom{\rule{4pt}{0ex}}+\phantom{\rule{4pt}{0ex}}^{4}\mathrm{He}$ (${S}_{\ensuremath{\alpha}}=1.586$ MeV). Extensive kinematic and theoretical calculations suggest that the $^{3}\mathrm{He}$ ions mostly originate from the $^{4}\mathrm{He}$-stripping process and the $^{4}\mathrm{He}$ production is mainly triggered by the fusion-evaporation channel. The role played by the breakup, $^{3}\mathrm{He}$-stripping, $1n$-stripping, and $1n$-pickup processes is also discussed.

Details

ISSN :
1089490X and 05562813
Volume :
92
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........48103a6c0dfaf53b7c6cbb1ffe1c2ecc
Full Text :
https://doi.org/10.1103/physrevc.92.024615