Viscosity of strongly interacting quantum fluids: spectral functions and sum rules
Abstract
The viscosity of strongly interacting systems is a topic of great interest in diverse fields. We focus here on the bulk and shear viscosities of \emph{non-relativistic} quantum fluids, with particular emphasis on strongly interacting ultracold Fermi gases. We use Kubo formulas for the bulk and shear viscosity spectral functions, and respectively, to derive exact, non-perturbative results. Our results include: a microscopic connection between the shear viscosity and the normal fluid density ; sum rules for and and their evolution through the BCS-BEC crossover; universal high-frequency tails for and the dynamic structure factor . We use our sum rules to show that, at unitarity, is identically zero and thus relate to density-density correlations. We predict that frequency-dependent shear viscosity of the unitary Fermi gas can be experimentally measured using Bragg spectroscopy.
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Cite
@article{arxiv.1002.0869,
title = {Viscosity of strongly interacting quantum fluids: spectral functions and sum rules},
author = {Edward Taylor and Mohit Randeria},
journal= {arXiv preprint arXiv:1002.0869},
year = {2014}
}
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