PaperPanorama

arXiv:1806.08638·v2·Atomic Physics

Efimov effect in a -dimensional Born-Oppenheimer approach

D. S. Rosa · T. Frederico · G. Krein · M. T. Yamashita

Abstract

We study a three-body system, formed by two identical heavy bosons and a light particle, in the Born-Oppenheimer approximation for an arbitrary dimension . We restrict to the interval , and derive the heavy-heavy -dimensional effective potential proportional to ( is the relative distance between the heavy particles), which is responsible for the Efimov effect. We found that the Efimov states disappear once the critical strength of the heavy-heavy effective potential approaches the limit . We obtained the scaling function for the Cs-Cs-Li system as the limit cycle of the correlation between the energies of two consecutive Efimov states as a function of and the heavy-light binding energy . In addition, we found that the energy of the excited state reaches the two-body continuum independently of the dimension when , where is the excited three-body binding energy.

Citation historyopen in Citation History ↗