Shear viscosity of a universal Fermi gas near the superfluid phase transition
arXiv:1410.4835 · doi:10.1103/PhysRevLett.115.020401
Abstract
We precisely measure the shear viscosity for a resonantly interacting Fermi gas as a function of temperature, from nearly the ground state through the superfluid phase transition at a critical temperature . Using an iterative method to invert the data, we extract the {\it local} shear viscosity coefficient versus reduced temperature , revealing previously hidden features. We find that begins to decrease rapidly with decreasing well above , suggesting that preformed pairs play an important role. Further, we observe that the derivative has a maximum at . We compare the local data to several microscopic theories. Finally, we determine the local ratio of the shear viscosity to the entropy density.
9 pages, 10 figures
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