Observation of mass-asymmetric fission of mercury nuclei in heavy ion fusion
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Authors
Prasad, E.
Hinde, David
Ramachandran, K.
Williams, E.
Dasgupta, M.
Carter, I. P.
Cook, K. J.
Jeung, D. Y.
Luong, D. H.
McNeil, S.
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American Physical Society
Abstract
Background: Mass-asymmetric fission has been observed in low energy fission of 180Hg. Calculations predicted
the persistence of asymmetric fission in this region even at excitation energies of 30–40 MeV.
Purpose: To investigate fission mass distributions by populating different isotopes of Hg using heavy ion fusion
reactions.
Methods: Fission fragment mass-angle distributions have been measured for two reactions, 40Ca+142Nd and 13C+182W, populating 182Hg and 195Hg, respectively, using the Heavy Ion Accelerator Facility and CUBE
spectrometer at the Australian National University. Measurements were made at beam energies around the capture
barrier for the two reactions and mass ratio distributions were obtained using the kinematic reconstruction method.
Results: Asymmetric fission has been observed following the population of 182Hg at an excitation energy of
22.8 MeV above the saddle point. A symmetric peaked mass ratio distribution was observed for 195Hg nuclei at
a similar excitation energy above the saddle point.
Conclusions: Mass-asymmetric fission has been observed in neutron deficient Hg nuclei populated via heavy
ion fusion for the first time. The results are consistent with observations from beta-delayed fission measurements
and provide a proof-of-principle for expanding experimental studies of the influence of shell effects on the fission
processes.
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Physical Review C - Nuclear Physics
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