English

Inclusive breakup of Borromean nuclei

Nuclear Theory 2017-08-02 v1 Nuclear Experiment

Abstract

We derive the inclusive breakup cross section of a three-fragment projectile nuclei, a=b+x1+x2a = b +x_1 + x_2, in the spectator model. The resulting four-body cross section for observing bb, is composed of the elastic breakup cross section which contains information about the correlation between the two participant fragments, and the inclusive non-elastic breakup cross section. This latter cross section is found to be a non-trivial four-body generalization of the Austern formula \cite{Austern1987}, which is proportional to a matrix element of the form, ρ^x1,x2[Wx1+Wx2+W3B]ρ^x1,x2\langle\hat{\rho}_{{x_1},{x_2}}\left|\left[W_{{x_1}} + W_{{x_2}} + W_{3B}\right]\right|\hat{\rho}_{{x_1}, {x_2}}\rangle. The new feature here is the three-body absorption, represented by the imaginary potential, W3BW_{3B}. We analyze this type of absorption and supply ideas of how to calculate its contribution.

Keywords

Cite

@article{arxiv.1608.00278,
  title  = {Inclusive breakup of Borromean nuclei},
  author = {Mahir S. Hussein and Brett V. Carlson and Tobias Frederico},
  journal= {arXiv preprint arXiv:1608.00278},
  year   = {2017}
}

Comments

4 pages, one page, Contribution to the Proceedings of Cluster16, May 23-27, 2016, Napoli-Italy, to appear in Journal of Physics Conference Series