English

Critical Vortex Shedding in a Strongly Interacting Fermionic Superfluid

Quantum Gases 2018-12-05 v1

Abstract

We study the critical vortex shedding in a strongly interacting fermionic superfluid of 6^{6}Li across the BEC-BCS crossover. By moving an optical obstacle in the sample and directly imaging the vortices after time of flight, the critical velocity vcv_{{\rm c}} for vortex shedding is measured as a function of the obstacle travel distance LL. The observed vcv_{\rm c} increases with decreasing LL, where the rate of increase is the highest in the unitary regime. In the deep BEC regime, an empirical dissipation model well captures the dependence of vcv_{{\rm c}} on LL, characterized by a constant value of η=d(1/vc)d(1/L)\eta = -\frac{{\rm d}(1/v_{{\rm c}})}{{\rm d}(1/L)}. However, as the system is tuned across the resonance, a step increase of η\eta develops about a characteristic distance LcL_{\rm c} as LL is increased, where LcL_{\rm c} is comparable to the obstacle size. This bimodal behavior is strengthened as the system is tuned towards the BCS regime. We attribute this evolution of vcv_{{\rm c}} to the participation of pair breaking in the vortex shedding dynamics of a fermionic superfluid.

Keywords

Cite

@article{arxiv.1805.08950,
  title  = {Critical Vortex Shedding in a Strongly Interacting Fermionic Superfluid},
  author = {Jee Woo Park and Bumsuk Ko and Yong-il Shin},
  journal= {arXiv preprint arXiv:1805.08950},
  year   = {2018}
}

Comments

8 pages, 8 figures

R2 v1 2026-06-23T02:05:11.111Z