English

Isoscaling behavior in the Fission Dynamics

Nuclear Theory 2016-09-08 v3

Abstract

The fission processes of 112^{112}Sn + 112^{112}Sn and 116^{116}Sn + 116^{116}Sn are simulated with the combination of the Langevin equation and the statistical decay model. The masses of two fission fragments are given by assuming the process of symmetric fission or asymmetric fission by the Monte Carlo sampling with the Gaussian probability distribution. From the analysis to the isotopic/isotonic ratios of the fission fragments from both reactions, the isoscaling behavior has been observed and investigated in details. Isoscaling parameters α\alpha and β\beta are extracted as a function of the charge number and neutron number, respectively, in different width of the sampling Gaussian probability distribution. It seems that α\alpha is sensitive to the width of fission probability distribution of the mass asymmetrical parameter but β\beta is not. Both α\alpha and β\beta drop with the increasing of beam energy and the reduced friction parameter.

Keywords

Cite

@article{arxiv.nucl-th/0412034,
  title  = {Isoscaling behavior in the Fission Dynamics},
  author = {Y. G. Ma and K. Wang and X. Z. Cai and J. G. Chen and J. H. Chen and D. Q. Fang and W. Guo and C. W. Ma and G. L. Ma and W. Q. Shen and Q. M. Su and W. D. Tian and Y. B. Wei and T. Z. Yan and C. Zhong and X. F. Zhou and J. X. Zuo},
  journal= {arXiv preprint arXiv:nucl-th/0412034},
  year   = {2016}
}

Comments

11 pages, 13 figures (two figures were added). Accepted by the Physical Review C

R2 v1 2026-07-22T18:33:05.814Z