English

Unconventional pairing in few-fermion systems at finite temperature

Quantum Gases 2023-08-24 v3 Superconductivity Quantum Physics

Abstract

Attractively interacting two-component mixtures of fermionic particles confined in a one-dimensional harmonic trap are investigated. Properties of balanced and imbalanced systems are systematically explored with the exact diagonalization approach, focusing on the finite-temperature effects. Using single- and two-particle density distributions, specific non-classical pairing correlations are analyzed in terms of the noise correlations -- quantity directly accessible in state-of-the-art experiments with ultra-cold atoms. It is shown that along with increasing temperature, any imbalanced system hosting Fulde-Ferrel-Larkin-Ovchinnikov pairs crossovers to a standard Bardeen-Cooper-Schrieffer one characterized by zero net momentum of resulting pairs. By performing calculations for systems with different imbalances, the approximate boundary between the two phases on a phase diagram is determined.

Keywords

Cite

@article{arxiv.2202.07639,
  title  = {Unconventional pairing in few-fermion systems at finite temperature},
  author = {Daniel Pęcak and Tomasz Sowiński},
  journal= {arXiv preprint arXiv:2202.07639},
  year   = {2023}
}

Comments

All data generated or analysed during this study are available in Zenodo repository DOI:10.5281/zenodo.8220783 see https://zenodo.org/record/8220784