Oscillatory-like Expansion of a Fermionic Superfluid
Abstract
We study the expansion behaviours of a Fermionic superfluid in a cigar-shaped optical dipole trap for the whole BEC-BCS crossover and various temperatures. At low temperature (), the atom cloud undergoes an anisotropic hydrodynamic expansion over 30~ms, which behaves like oscillation in the horizontal plane. By analyzing the expansion dynamics according to the superfluid hydrodynamic equation, the effective polytropic index of Equation-of-State of Fermionic superfluid is extracted. The values show a non-monotonic behavior over the BEC-BCS crossover, and have a good agreement with the theoretical results in the unitarity and BEC side. The normalized quasi-frequencies of the oscillatory expansion are measured, which drop significantly from the BEC side to the BCS side and reach a minimum value of 1.73 around . Our work improves the understanding of the dynamic properties of strongly interacting Fermi gas.
Cite
@article{arxiv.1702.08326,
title = {Oscillatory-like Expansion of a Fermionic Superfluid},
author = {Xiao-Qiong Wang and Yu-Ping Wu and Xiang-Pei Liu and Yu-Xuan Wang and Hao-Ze Chen and Mudassar Maraj and Youjin Deng and Xing-Can Yao and Yu-Ao Chen and Jian-Wei Pan},
journal= {arXiv preprint arXiv:1702.08326},
year = {2020}
}