English

Bilayer superfluidity of fermionic polar molecules: many body effects

Quantum Gases 2015-05-20 v1 Superconductivity

Abstract

We study the BCS superfluid transition in a single-component fermionic gas of dipolar particles loaded in a tight bilayer trap, with the electric dipole moments polarized perpendicular to the layers. Based on the detailed analysis of the interlayer scattering, we calculate the critical temperature of the interlayer superfluid pairing transition when the layer separation is both smaller (dilute regime) and of the order or larger (dense regime) than the mean interparticle separation in each layer. Our calculations go beyond the standard BCS approach and include the many-body contributions resulting in the mass renormalization, as well as additional contributions to the pairing interaction. We find that the many-body effects have a pronounced effect on the critical temperature, and can either decrease (in the very dilute limit) or increase (in the dense and moderately dilute limits) the transition temperature as compared to the BCS approach.

Keywords

Cite

@article{arxiv.1012.5589,
  title  = {Bilayer superfluidity of fermionic polar molecules: many body effects},
  author = {M. A. Baranov and A. Micheli and S. Ronen and P. Zoller},
  journal= {arXiv preprint arXiv:1012.5589},
  year   = {2015}
}

Comments

23 pages, 10 figures, final approval from S. Ronen was not received due to his no-response

R2 v1 2026-06-21T17:04:26.904Z