December 2023

Journal

Study of Quasielastic Barrier Distributions as a Step towards the Synthesis of Superheavy Elements with Hot Fusion Reactions

By:
Tanaka, T.; Boll, Rose A; Brewer, Nathan T; VanCleve, Shelley M; Dean, David J; Rasco, Bertis C; Roberto, James B; Rykaczewski, Krzysztof P; Stracener, Daniel W
Journal Name:
Physical Review Letters
Page Number:
52502-52502
Volume:
124
Issue Number:
5
Publication Date:
December 27, 2023
View DOI Listing:
https://doi.org/10.1103/PhysRevLett.124.052502

Abstract

The excitation functions for quasielastic scattering of 22Ne+248Cm, 26Mg+248Cm, and 48Ca+238U are measured using a gas-filled recoil ion separator. The quasielastic barrier distributions are extracted for these systems and are compared with coupled-channel calculations. The results indicate that the barrier distribution is affected dominantly by deformation of the actinide target nuclei, but also by vibrational or rotational excitations of the projectile nuclei, as well as neutron transfer processes before capture. From a comparison between the experimental barrier distributions and the evaporation residue cross sections for Sg (Z=106), Hs (108), Cn (112), and Lv (116), it is suggested that the hot fusion reactions take advantage of a compact collision, where the projectile approaches along the short axis of a prolately deformed nucleus. A new method is proposed to estimate the optimum incident energy to synthesize unknown superheavy nuclei using the barrier distribution.