English

Trajectory of virtual, bound and resonant Efimov states

Nuclear Theory 2009-01-16 v1

Abstract

The pole trajectory of Efimov states for a three-body ααβ\alpha\alpha\beta system with αα\alpha\alpha unbound and αβ\alpha\beta bound is calculated using a zero-range Dirac-δ\delta potential. It is showed that a three-body bound state turns into a virtual one by increasing the αβ\alpha\beta binding energy. This result is consistent with previous results for three equal mass particles. The present approach considers the nn18Cn-n-^{18}C halo nucleus. However, the results have good perspective to be tested and applied in ultracold atomic systems, where one can realize such three-body configuration with tunable two-body interaction.

Keywords

Cite

@article{arxiv.0712.1231,
  title  = {Trajectory of virtual, bound and resonant Efimov states},
  author = {M. T. Yamashita and T. Frederico and L. Tomio},
  journal= {arXiv preprint arXiv:0712.1231},
  year   = {2009}
}

Comments

Proceedings of the 20th European Conference on Few-Body Problems in Physics. To be published in Few-Body Systems