Strong Orientation Dependence of Multinucleon Transfer Processes in $^{238}$U+$^{124}$Sn Reaction
Abstract
We theoretically investigate multinucleon transfer (MNT) processes in U+Sn reaction at MeV/ using the time-dependent Hartree-Fock (TDHF) theory. For this reaction, measurements of MNT processes have been reported, showing substantial MNT cross sections accompanying more than ten protons. From the calculation, we find that the amount of transferred nucleons depends much on the relative orientation between the deformation axis of U and the relative vector connecting centers of U and Sn nuclei. We find a formation of thick neck when the U collides from its tip with Sn. However, the neck formation is substantially suppressed when U collides from its side. We have found that a large number of protons are transferred in the tip collision. This is caused by the breaking of the neck and subsequent absorption of nucleons in the neck region. We thus conclude that the measured MNT processes involving about ten protons originate from the neck breaking dynamics in the tip collisions of a deformed U nucleus.
Keywords
Cite
@article{arxiv.1409.8612,
title = {Strong Orientation Dependence of Multinucleon Transfer Processes in $^{238}$U+$^{124}$Sn Reaction},
author = {Kazuyuki Sekizawa and Kazuhiro Yabana},
journal= {arXiv preprint arXiv:1409.8612},
year = {2016}
}
Comments
4 pages, 2 figures, Poster given at 2nd Conference of Advances in Radioactive Isotope Science (ARIS2014), June 1-6, 2014, Tokyo, Japan