English

Experimental signature of collective enhancement in nuclear level density

Nuclear Experiment 2018-04-18 v1

Abstract

We present a probable experimental signature of collective enhancement in the nuclear level density (NLD) by measuring the neutron and the giant dipole resonance (GDR) γ\gamma rays emitted from the rare earth 169^{169}Tm compound nucleus populated at 26.1 MeV excitation energy. An enhanced yield is observed in both neutron and γ\gamma ray spectra corresponding to the same excitation energy in the daughter nuclei. The enhancement could only be reproduced by including a collective enhancement factor in the Fermi gas model of NLD to explain the neutron and GDR spectra simultaneously. The experimental results show that the relative enhancement factor is of the order of 10 and the fadeout occurs at \sim 14 MeV excitation energy, much before the commonly accepted transition from deformed to spherical shape. We also explain how the collective enhancement contribution changes the inverse level density parameter (kk) from 8 to 9.5 MeV observed recently in several deformed nuclei.

Keywords

Cite

@article{arxiv.1804.00814,
  title  = {Experimental signature of collective enhancement in nuclear level density},
  author = {Deepak Pandit and Srijit Bhattacharya and Debasish Mondal and Pratap Roy and K. Banerjee and S. Mukhopadhyay and Surajit Pal and A. De and Balaram Dey and S. R. Banerjee},
  journal= {arXiv preprint arXiv:1804.00814},
  year   = {2018}
}

Comments

6 pages, 4 figures, Accepted in Phys. Rev. C (Rapid Communications)