English

Systematic study of projectile structure effect on fusion barrier distribution

Nuclear Experiment 2011-08-11 v1

Abstract

Quasielastic excitation function measurement has been carried out for the 4^{4}He + 232^{232}Th system at θlab\theta_{lab}=160^\circ with respect to the beam direction, to obtain a representation of the fusion barrier distribution. Using the present data along with previously measured barrier distribution results on 12^{12}C, 16^{16}O, and 19^{19}F + 232^{232}Th systems a systematic analysis has been carried out to investigate the role of target and/or projectile structures on fusion barrier distribution. It is observed that for 4^{4}He, 12^{12}C, and 16^{16}O + 232^{232}Th, reactions the couplings due to target states only are required in coupled channel fusion calculations to explain the experimental data, whereas for the 19^{19}F+ 232^{232}Th system along with the coupling of target states, inelastic states of 19^{19}F are also required to explain the experimental results on fusion-barrier distribution. The width of the barrier distribution shows interesting transition behavior when plotted with respect to the target-projectile charge product for the above systems.

Cite

@article{arxiv.1107.5866,
  title  = {Systematic study of projectile structure effect on fusion barrier distribution},
  author = {Pratap Roy and A. Saxena and B. K. Nayak and E. T. Mirgule and B. John and Y. K. Gupta and L. S. Danu and R. P. Vind and Ashok Kumar and R. K. Choudhury},
  journal= {arXiv preprint arXiv:1107.5866},
  year   = {2011}
}

Comments

5 pages and 5 figures

R2 v1 2026-06-21T18:43:45.581Z