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Fusion ofCa48+Zr90,96above and below the Coulomb barrier

Authors :
S. Beghini
Neil Rowley
A. M. Stefanini
Fernando Scarlassara
H. Q. Zhang
Z. H. Liu
M. Trotta
A. Gadea
F. Yang
B. R. Behera
Suzana Szilner
Y. W. Wu
R. Silvestri
L. Corradi
M. Ruan
E. Fioretto
G. Montagnoli
Source :
Physical Review C. 73
Publication Year :
2006
Publisher :
American Physical Society (APS), 2006.

Abstract

Fusion-evaporation cross sections were measured in the two systems {sup 48}Ca+{sup 90,96}Zr in an energy range from well below to well above the Coulomb barrier. The sub-barrier fusion of {sup 48}Ca+{sup 90}Zr is reproduced by coupled-channels calculations including the lowest quadrupole and octupole vibrations of {sup 90}Zr, and using a Woods-Saxon potential with a standard diffuseness parameter a = 0.68 fm. However, the fusion cross sections are overestimated above the barrier. The low-energy slope of the excitation function for {sup 48}Ca+{sup 96}Zr is steeper. This implies a larger diffuseness parameter a = 0.85 fm. Fusion cross sections are well fit in the whole energy range, and the effect of the strong octupole vibration in {sup 96}Zr is predominant. The extracted fusion barrier distributions are reasonably well reproduced by calculations for both systems. A comparison with previous data for {sup 40}Ca+{sup 90,96}Zr is made in an attempt to clarify the role of transfer couplings in sub-barrier fusion.

Details

ISSN :
1089490X and 05562813
Volume :
73
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........fddfa7923d3891f3bf4c04fa764dd052