English

Three Identical Fermions with Resonant p-wave Interactions in Two Dimensions

Quantum Gases 2014-08-08 v2

Abstract

A new kind of "super-Efimov" states of binding energies scaling as lnEne3nπ/4\ln|E_n|\sim-e^{3n\pi/4} were predicted by a field theory calculation for three fermions with resonant pp-wave interactions in two dimensions [Phys. Rev. Lett. \textbf{110}, 235301 (2013)]. However, the universality of these "super-Efimov" states has not been proved independently. In this Letter, we study the three fermion system through the hyperspherical formalism. Within the adiabatic approximation, we find that at pp-wave resonances, the low energy physics of states of angular momentum =±1\ell=\pm1 crucially depends on the value of an emergent dimensionless parameter YY determined by the detail of the inter-particle potential. Only if YY is exactly zero, the predicted "super-Efimov" states exist. If Y>0Y>0, the scaling of the bound states changes to lnEn(nπ)2/2Y\ln|E_n|\sim-(n\pi)^2/2Y, while there are no shallow bound states if Y<0Y<0.

Keywords

Cite

@article{arxiv.1401.0965,
  title  = {Three Identical Fermions with Resonant p-wave Interactions in Two Dimensions},
  author = {Chao Gao and Zhenhua Yu},
  journal= {arXiv preprint arXiv:1401.0965},
  year   = {2014}
}

Comments

The neglected term $Q_{00}$ has been calculated numerically and found to be non-negligible in the large hyperradius limit

R2 v1 2026-06-22T02:39:27.394Z