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Effect of compound nucleus spin correlations on fission fragment angular distribution

Nuclear Theory 2019-11-28 v1 Quantum Physics

Abstract

We extend a conventional description of the fusion-fission fragment angular distributions by introducing the correlation between compound nucleus states carrying different total angular momenta. This correlation results in the strong anisotropy and mass-angle correlation of fission fragments for compact saddle-point nuclear shapes for which the conventional description predicts almost isotropic angular distributions. The spin off-diagonal phase relaxation timescale, 1019\simeq 10^{-19} sec, obtained from analysis of anomalous fission fragment angular distributions in 12^{12}C+236^{236}U, 16^{16}O+232^{232}Th and 16^{16}O+238^{238}U collisions at the sub-barrier energies is three orders of magnitude longer than the timescale of the compound nucleus thermalization. Expression for the angle-dependent time power spectrum for quasifission is also presented.

Keywords

Cite

@article{arxiv.1911.11832,
  title  = {Effect of compound nucleus spin correlations on fission fragment angular distribution},
  author = {Oleksandr Gorbachenko and Sergey Kun},
  journal= {arXiv preprint arXiv:1911.11832},
  year   = {2019}
}

Comments

4 pages, 1 figure