Published April 21, 1986 | Version v1
Journal article

Cold fragmentation in thermal-neutron-induced fission of 233U and 235U

  • 1. Technische Hochschule Darmstadt (Germany, F.R.). Inst. fuer Kernphysik
  • 2. Muenchen Univ. (Germany, F.R.). Sektion Physik
  • 3. Gesellschaft fuer Schwerionenforschung m.b.H., Darmstadt (Germany, F.R.)
  • 4. Institut Max von Laue - Paul Langevin, 38 - Grenoble (France)
  • 5. Karlsruhe Univ. (T.H.) (Germany, F.R.)

Description

The mass spectrometer Lohengrin of the Institut Laue-Langevin in Grenoble was used to measure fission-fragment mass yields in the mass range 80<=A<=107 for light-fission-fragment kinetic energies up to about 115 MeV for the reactions sup(232,235)U(nsub(th),f). The kinetic energies corresponding to a common fixed yield level for each isobar reflect the influence of the proton pairing energy, but not of the neutron pairing energy. By using calculated Q-values for the different mass splits, mass distributions at fixed total excitation energy are deduced from the data. At a fixed total excitation energy of about 7 MeV, the yield increases from very asymmetric mass splits (Asub(L)approx.=80) to more symmetric mass splits (Asub(L)approx.=105) by more than two orders of magnitude. This strong dependence on the mass split seems to be correlated with the decreasing surface-to-surface distance of the unaccelerated fission fragments in this range of mass splits, as calculated under the assumption that the total Q-value is represented by the mutual Coulomb repulsion of the two fragments. The influence of the fission-fragment ground-state deformations on the yield in cold fragmentation could not be detected unambiguously. (orig.)

Additional details

Publishing Information

Journal Title
Nucl. Phys., A
Journal Volume
452
Journal Issue
2
Series
Nucl. Phys., A.
Journal Page Range
277-295
ISSN
0375-9474
CODEN
NUPAB