English

Viscosity Bound Violation in Viscoelastic Fermi Liquids

Strongly Correlated Electrons 2019-06-28 v5

Abstract

The anti-de Sitter/conformal field theory correspondence (AdS/CFT) has been used to determine a lower bound on the ratio of shear viscosity (η)\left(\eta\right) to entropy density (s)(s) for strongly-coupled field theories with a gravity dual. The conjectured universal lower bound, given as η/s/4πkB\eta/s\geq\hbar/4\pi k_B, is a measure of interaction strength in a quantum fluid where equality indicates a perfect quantum fluid. In this paper we study η/s\eta/s in a Fermi gas in the unitary limit. We show that in addition to a local minimum for η/s\eta/s at T2TcT\approx 2T_c which obeys the lower bound, a more interesting result exists in the violation of the η/s\eta/s lower bound due to the superfluid fluctuations above TcT_c. To conclude, we examine the viscoelastic properties of the unitary Fermi gas. Previous work brought to light the connection between violation of the η/s\eta/s bound and a viscoelastic response in the context of holographic solids. We ultimately find that, in addition to holographic solids, all Fermi liquids with a viscoelastic response produced by superfluid fluctuations can violate the universal η/s\eta/s lower bound.

Keywords

Cite

@article{arxiv.1801.08627,
  title  = {Viscosity Bound Violation in Viscoelastic Fermi Liquids},
  author = {Matthew P. Gochan and Hua Li and Kevin S. Bedell},
  journal= {arXiv preprint arXiv:1801.08627},
  year   = {2019}
}

Comments

13 pages, 4 figures. J. Phys. Commun. (2019)