Motivated by recent experimental breakthroughs in generating spin-orbit coupling in ultracold Fermi gases using Raman laser beams, we present a systematic study of spin-orbit-coupled Fermi gases confined in a quasi-one-dimensional trap in the presence of an in-plane Zeeman field (which can be realized using a finite two-photon Raman detuning). We find that a topological Fulde-Ferrell state will emerge, featuring finite-momentum Cooper pairing and zero-energy Majorana excitations localized near the edge of the trap based on the self-consistent Bogoliubov-de Genes (BdG) equations. We find analytically the wavefunctions of the Majorana modes. Finally using the time-dependent BdG we show how the finite-momentum pairing field manifests itself in...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
4We analyze the strongly correlated regime of a two-component trapped ultracold fermionic gas in a s...
We study a model of a two-dimensional ultracold atomic gas subjected to an “optical flux lattice”: a...
Motivated by recent experimental breakthroughs in generating spin-orbit coupling in ultracold Fermi ...
We theoretically predict a topological matter-topological inhomogeneous Fulde-Ferrell superfluid-in ...
We investigate theoretically the prospect of realizing a topological superfluid in one-dimensional s...
Topological superfluids are recently discovered quantum matter that hosts topologically protected ga...
Inhomogeneous superfluidity lies at the heart of many intriguing phenomena in quantum physics. It is...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
Topological superfluids usually refer to a superfluid state which is gapped in the bulk but metallic...
We investigate theoretically nonmagnetic impurity scattering in a one-dimensional atomic topological...
We study the two-body bound states in a spin-orbital-angular-momentum (SOAM) coupled quantum gas of ...
<p><strong>Figure 6.</strong> Position-resolved photoemission spectrum calculated with the parameter...
<p><strong>Figure 10.</strong> (a) Scheme of the electronic states used for creating spin-dependent ...
We theoretically investigate the behavior of dark solitons in a one-dimensional spin-orbit coupled a...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
4We analyze the strongly correlated regime of a two-component trapped ultracold fermionic gas in a s...
We study a model of a two-dimensional ultracold atomic gas subjected to an “optical flux lattice”: a...
Motivated by recent experimental breakthroughs in generating spin-orbit coupling in ultracold Fermi ...
We theoretically predict a topological matter-topological inhomogeneous Fulde-Ferrell superfluid-in ...
We investigate theoretically the prospect of realizing a topological superfluid in one-dimensional s...
Topological superfluids are recently discovered quantum matter that hosts topologically protected ga...
Inhomogeneous superfluidity lies at the heart of many intriguing phenomena in quantum physics. It is...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
Topological superfluids usually refer to a superfluid state which is gapped in the bulk but metallic...
We investigate theoretically nonmagnetic impurity scattering in a one-dimensional atomic topological...
We study the two-body bound states in a spin-orbital-angular-momentum (SOAM) coupled quantum gas of ...
<p><strong>Figure 6.</strong> Position-resolved photoemission spectrum calculated with the parameter...
<p><strong>Figure 10.</strong> (a) Scheme of the electronic states used for creating spin-dependent ...
We theoretically investigate the behavior of dark solitons in a one-dimensional spin-orbit coupled a...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
4We analyze the strongly correlated regime of a two-component trapped ultracold fermionic gas in a s...
We study a model of a two-dimensional ultracold atomic gas subjected to an “optical flux lattice”: a...