Back to Search Start Over

Fission modes in the reaction208Pb(18O,f)

Authors :
K. Lukashin
S.V. Zhdanov
Luciano Calabretta
N. A. Kondratiev
G. Bellia
V. S. Salamatin
Ya Rusanov
J.M. Itkis
Francis Hanappe
C. Agodi
A. Kelic
V. V. Pashkevich
G. Rudolf
S.I. Mul'gin
I. V. Pokrovsky
B. Hurst
G. G. Chubarian
E. M. Kozulin
R.P. Schmitt
Louise Stuttge
M. G. Itkis
E. V. Prokhorova
Concettina Maiolino
Source :
Physical Review C. 62
Publication Year :
2000
Publisher :
American Physical Society (APS), 2000.

Abstract

Results of fission fragment mass-energy distributions of the compound ${}^{226}\mathrm{Th}$ nucleus formed in the sub-barrier fusion reaction ${}^{18}\mathrm{O}{+}^{208}\mathrm{Pb}$ at an energy of ${}^{18}\mathrm{O}$ ions ${E}_{\mathrm{lab}}=78$ MeV are reported. The reaction has been studied twice using two different accelerators, and both sets of experimental data agree quite well. Performed analysis of the experimental data with the use of a new multicomponent method has shown that alongside the well-known modes, i.e., the symmetric (S) and two asymmetric modes standard-one and standard-two, a high-energy mode standard-three has manifested itself. The last named mode appears due to the influence of the close-to-sphere neutron shell with $N\ensuremath{\approx}50$ in the light fission fragment group. Theoretical calculations of the prescission shapes of the fissioning nuclei ${}^{224,226}\mathrm{Th}$ confirm this conclusion.

Details

ISSN :
1089490X and 05562813
Volume :
62
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........6e5b82a1ffe5bfc08b31ca6ffdf21bf4
Full Text :
https://doi.org/10.1103/physrevc.62.014615