English

Trajectory of neutron$-$neutron$-^{18}C$ excited three-body state

Nuclear Theory 2011-03-28 v4 Soft Condensed Matter Nuclear Experiment

Abstract

The trajectory of the first excited Efimov state is investigated by using a renormalized zero-range three-body model for a system with two bound and one virtual two-body subsystems. The approach is applied to nn18n-n-^{18}C, where the nnn-n virtual energy and the three-body ground state are kept fixed. It is shown that such three-body excited state goes from a bound to a virtual state when the n18n-^{18}C binding energy is increased. Results obtained for the n19n-^{19}C elastic cross-section at low energies also show dominance of an SS-matrix pole corresponding to a bound or virtual Efimov state. It is also presented a brief discussion of these findings in the context of ultracold atom physics with tunable scattering lengths.

Keywords

Cite

@article{arxiv.0704.1461,
  title  = {Trajectory of neutron$-$neutron$-^{18}C$ excited three-body state},
  author = {M. T. Yamashita and T. Frederico and Lauro Tomio},
  journal= {arXiv preprint arXiv:0704.1461},
  year   = {2011}
}