English

Investigating neutron transfer in the $^{9}$Be + $^{197}$Au system

Nuclear Experiment 2021-09-01 v1 Nuclear Theory

Abstract

In this work n\textit{n}-transfer and incomplete fusion cross sections for 9^{9}Be + 197^{197}Au system are reported over a wide energy range, Ec.m._{c.m.} \approx 29-45 MeV. The experiment was carried out using activation technique and off-line gamma counting. The transfer process is found to be the dominant mode as compared to all other reaction channels. Detailed coupled reaction channel (CRC) calculations have been performed for n\textit{n}-transfer stripping and pickup cross sections. The measured 1n\textit{n}-stripping cross sections are explained with CRC calculations by including the ground state and the 2+^{+} resonance state (E = 3.03 MeV) of 8^{8}Be. The calculations for 1n\textit{n}-pickup, including only the ground state of 10^{10}Be agree reasonably well with the measured cross sections, while it overpredicts the data at subbarrier energies. For a better insight into the role of projectile structure in the transfer process, a comprehensive analysis of 1n\textit{n}-stripping reaction has been carried out for various weakly bound projectiles on 197^{197}Au target nucleus. The transfer cross sections scaled with the square of total radius of interacting nuclei show the expected Q-value dependence of 1n\textit{n}-stripping channel for weakly bound stable projectiles.

Keywords

Cite

@article{arxiv.2104.13689,
  title  = {Investigating neutron transfer in the $^{9}$Be + $^{197}$Au system},
  author = {Malika Kaushik and S. K. Pandit and V. V. Parkar and G. Gupta and Swati Thakur and V. Nanal and H. Krishnamoorthy and A. Shrivastava and C. S. Palshetkar and K. Mahata and K. Ramachandran and S. Pal and R. G. Pillay and Pushpendra P. Singh},
  journal= {arXiv preprint arXiv:2104.13689},
  year   = {2021}
}