Origins of Incomplete Fusion Products and the Suppression of Complete Fusion in Reactions of Li 7
Loading...
Date
Authors
Cook, Kaitlin
Simpson, Edward
Bezzina, Lauren
Dasgupta, Mahananda
Hinde, David
Banerjee, Kaushik
Berriman, Annette
Sengupta, Chandrima
Journal Title
Journal ISSN
Volume Title
Publisher
American Physical Society
Abstract
Above-barrier complete fusion involving nuclides with low binding energy is typically suppressed by 30%. The mechanism that causes this suppression, and produces the associated incomplete fusion products, is controversial. We have developed a new experimental approach to investigate the mechanisms that produce incomplete fusion products, combining singles and coincidence measurements of light fragments and heavy residues in 7Li + 209Bi reactions. For polonium isotopes, the dominant incomplete fusion product, only a small fraction can be explained by projectile breakup followed by capture: the dominant mechanism is triton cluster transfer. Suppression of complete fusion is therefore primarily a consequence of clustering in weakly bound nuclei rather than their breakup prior to reaching the fusion barrier. This implies that suppression of complete fusion will occur in reactions of nuclides where strong clustering is present.
Description
Keywords
Citation
Collections
Source
Physical Review Letters
Type
Book Title
Entity type
Access Statement
Open Access
License Rights
Restricted until
Downloads
File
Description