Disentangling effects of nuclear structure in heavy element formation
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Authors
Hinde, David
Thomas, Renju
du Rietz, Rickard
Diaz-Torres, Alexis
Dasgupta, Mahananda
Brown, Michael
Evers, Maurits
Gasques, Leandro
Rafiei, Ramin
Rodriguez, Matias
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American Physical Society
Abstract
Forming the same heavy compound nucleus with different isotopes of the projectile and target elements
allows nuclear structure effects in the entrance channel (resulting in static deformation) and in the
dinuclear system to be disentangled. Using three isotopes of Ti and W, forming 232Cm, with measurement
spanning the capture barrier energies, alignment of the heavy prolate deformed nucleus is shown to be the
main reason for the broadening of the mass distribution of the quasifission fragments as the beam energy is
reduced. The complex, consistently evolving mass-angle correlations that are observed carry more
information than the integrated mass or angular distributions, and should severely test models of
quasifission.
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Physical Review Letters 100.20 (2008): 202701/1-4
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Physical Review Letters
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