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Quantum phases of atomic Fermi gases with anisotropic spin-orbit coupling

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Subaşı, Ahmet Levent
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American Physical Society (APS)

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We consider a general anisotropic spin-orbit coupling (SOC) and analyze the phase diagrams of both balanced and imbalanced Fermi gases for the entire BCS--Bose-Einstein condensate (BEC) evolution. In the first part, we use the self-consistent mean-field theory at zero temperature, and show that the topological structure of the ground-state phase diagrams is quite robust against the effects of anisotropy. In the second part, we go beyond the mean-field description, and investigate the effects of Gaussian fluctuations near the critical temperature. This allows us to derive the time-dependent Ginzburg-Landau theory, from which we extract the effective mass of the Cooper pairs and their critical condensation temperature in the molecular BEC limit.
10 pages with 7 figures; to appear in PRA

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Physical Review A

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1050-2947

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OPEN

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Superconductivity (cond-mat.supr-con), Condensed Matter - Strongly Correlated Electrons, Strongly Correlated Electrons (cond-mat.str-el), Quantum Gases (cond-mat.quant-gas), Physics, Condensed Matter - Superconductivity, FOS: Physical sciences, Condensed Matter - Quantum Gases

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