English

Confinement-induced unatomic trimer states in mass-imbalanced systems

Quantum Gases 2025-03-04 v1 Quantum Physics

Abstract

As resonantly interacting trimers of the type AAB are progressively squeezed from D=3D=3 to D=2D=2, unatomic states emerge. We calculated the contacts from the high momentum tail of the single particle densities. The sharp increase of the contacts serves as a signature of the transition between the Efimov and unatomic regimes, characterized by the emergence of continuous scale invariance when the system reaches a critical dimension, DcD_c. This continuous scale invariance starts to dominate the behavior of the system at the dimension D<Dc\overline{D}<D_c, below which the trimers momentum distribution tails exhibit a power-law behavior signaling the unatomic regime. To illustrate our findings, we studied compounds of the forms 7^{7}Li23-^{23}Na2_{2}, 7^{7}Li87-^{87}Rb2_{2} and 7^{7}Li133-^{133}Cs2_{2}. The increase in the mass-imbalance of the trimers reduces the interval between DcD_c and D\overline{D}. The emergence of unatomic states can be experimentally verified by observing the two-body contact parameter, which is a quantity directly related to the thermodynamic properties of the gas.

Keywords

Cite

@article{arxiv.2503.01511,
  title  = {Confinement-induced unatomic trimer states in mass-imbalanced systems},
  author = {Rafael M. Francisco and D. S. Rosa and T. Frederico and M. T. Yamashita and G. Krein},
  journal= {arXiv preprint arXiv:2503.01511},
  year   = {2025}
}
R2 v1 2026-06-28T22:04:36.759Z