English

Strong coupling effects on specific heat in the BCS-BEC crossover

Quantum Gases 2019-05-22 v1

Abstract

We theoretically investigate strong-coupling effects on specific heat at constant volume CVC_{\rm V} in a superfluid Fermi gas with a tunable interaction associated with Feshbach resonance. Including fluctuations of the superfluid order parameter within the strong-coupling theory developed by Nozi\`eres and Schmitt-Rink, we calculate the temperature dependence of CVC_{\rm V} at the unitarity limit in the superfluid phase. We show that, in the low temperature region, T3T^3-behavior is shown in the temperature dependence of CVC_{\rm V}. This result indicates that the low-lying excitations are dominated by the gapless Goldstone mode, associated with the phase fluctuations of the superfluid order parameter. Since the Goldstone mode is one of the most fundamental phenomena in the Fermionic superfluidity, our results are useful for further understanding how the pairing fluctuations affects physical properties in the BCS-BEC crossover physics below the superfluid transition temperature.

Keywords

Cite

@article{arxiv.1904.09920,
  title  = {Strong coupling effects on specific heat in the BCS-BEC crossover},
  author = {Daisuke Inotani and Pieter van Wyk and Yoji Ohashi},
  journal= {arXiv preprint arXiv:1904.09920},
  year   = {2019}
}

Comments

8 pages, 4 figures

R2 v1 2026-06-23T08:46:28.423Z