We investigate the thermodynamic properties of a superfluid Fermi gas subject to Rashba spin-orbit coupling and effective Zeeman field. We adopt a T-matrix scheme that takes beyond-mean-field effects, which are important for strongly interacting systems, into account. We focus on the calculation of two important quantities: the superfluid transition temperature and the isothermal compressibility. Our calculation shows very distinct influences of the out-of-plane and the in-plane Zeeman fields on the Fermi gas. We also confirm that the in-plane Zeeman field induces a Fulde-Ferrell superfluid below the critical temperature and an exotic finite-momentum pseudogap phase above the critical temperature
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
The two-dimensional spin-imbalanced Fermi gas subject to s-wave pairing and spin-orbit coupling is c...
We theoretically analyze the pairing instability of a three-dimensional ultracold atomic Fermi gas t...
We theoretically investigate the inhomogeneous Fulde–Ferrell (FF) superfluidity in a three-dimension...
We theoretically investigate the superfluid density and Berezinskii-Kosterlitz-Thouless (BKT) transi...
We analyze the effects of in-and out-of-plane Zeeman fields on the BCS-Bose-Einstein condensation (B...
Motivated by the prospect of realizing a Fermi gas with a synthetic non-Abelian gauge field, we inve...
Fermi gases with generalized Rashba spin-orbit coupling induced by a synthetic gauge field have the ...
The recent experimental realization of spin-orbit coupled Fermi gases provides a unique opportunity ...
The possibility of employing cold atomic gases as emulators of condensed matter Hamiltonians has got...
By adopting a T-matrix-based method within the G0G approximation for the pair susceptibility, we stu...
We investigate the zero-temperature properties of a quasi-ideal Fermi gas with Rashba spin-orbit cou...
Ultracold Fermi gas is an exciting field benefiting from atomic physics, optical physics and condens...
Recent experimental advances in ultra-cold Fermi gases allow for exploring response functions under ...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
The two-dimensional spin-imbalanced Fermi gas subject to s-wave pairing and spin-orbit coupling is c...
We theoretically analyze the pairing instability of a three-dimensional ultracold atomic Fermi gas t...
We theoretically investigate the inhomogeneous Fulde–Ferrell (FF) superfluidity in a three-dimension...
We theoretically investigate the superfluid density and Berezinskii-Kosterlitz-Thouless (BKT) transi...
We analyze the effects of in-and out-of-plane Zeeman fields on the BCS-Bose-Einstein condensation (B...
Motivated by the prospect of realizing a Fermi gas with a synthetic non-Abelian gauge field, we inve...
Fermi gases with generalized Rashba spin-orbit coupling induced by a synthetic gauge field have the ...
The recent experimental realization of spin-orbit coupled Fermi gases provides a unique opportunity ...
The possibility of employing cold atomic gases as emulators of condensed matter Hamiltonians has got...
By adopting a T-matrix-based method within the G0G approximation for the pair susceptibility, we stu...
We investigate the zero-temperature properties of a quasi-ideal Fermi gas with Rashba spin-orbit cou...
Ultracold Fermi gas is an exciting field benefiting from atomic physics, optical physics and condens...
Recent experimental advances in ultra-cold Fermi gases allow for exploring response functions under ...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
The two-dimensional spin-imbalanced Fermi gas subject to s-wave pairing and spin-orbit coupling is c...