Cite this article:
Jing Min, Xiangchuan Yan, Da-Li Sun, Lu Wang, Xin Xie, Xizhi Wu, Shi-Guo Peng, Kaijun Jiang. Shear viscosity of an ultracold Fermi gas in the BCS–BEC crossoverJ. Chin. Phys. B, 2025, 34(5): 053103.
| Jing Min, Xiangchuan Yan, Da-Li Sun, Lu Wang, Xin Xie, Xizhi Wu, Shi-Guo Peng, Kaijun Jiang. Shear viscosity of an ultracold Fermi gas in the BCS–BEC crossoverJ. Chin. Phys. B, 2025, 34(5): 053103. |
Shear viscosity of an ultracold Fermi gas in the BCS–BEC crossover
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Abstract
We report on the measurement of shear viscosity in an ultracold Fermi gas with variable temperatures and tunable interactions. A quadrupole mode excitation in an isotropic harmonic trap is used to quantify the shear viscosity of the quantum gas within the hydrodynamic regime. The shear viscosity of the system as a function of temperature has been investigated, and the results closely align with calculations in the high-temperature limit utilizing a new definition of the cutoff radius. Through an adiabatic sweep across the Bardeen–Cooper–Schrieffer (BCS) to Bose–Einstein condensate (BEC) crossover, we find that the minimum value of the shear viscosity, as a function of interaction strength, is significantly shifted toward the BEC side. Furthermore, the behavior of the shear viscosity is asymmetric on both sides of the location of the minimum. -
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