A functional-integral derivation yields an effective thermodynamic potential that incorporates Gaussian order-parameter fluctuations and their coupling to static disorder near Tc across the BCS-BEC crossover.
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Shear viscosity in ultracold Fermi gases varies by orders of magnitude near the BCS-BEC crossover, enabling tunable high-Reynolds-number flows.
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Self-consistent inclusion of disorder in the BCS-BEC crossover near the critical temperature
A functional-integral derivation yields an effective thermodynamic potential that incorporates Gaussian order-parameter fluctuations and their coupling to static disorder near Tc across the BCS-BEC crossover.
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Tunable viscosity across the BCS-BEC crossover
Shear viscosity in ultracold Fermi gases varies by orders of magnitude near the BCS-BEC crossover, enabling tunable high-Reynolds-number flows.