Topological superfluids are recently discovered quantum matter that hosts topologically protected gapless edge states known as Majorana fermions-exotic quantum particles that act as their own antiparticles and obey non-Abelian statistics. Their realizations are believed to lie at the heart of future technologies such as fault-tolerant quantum computation. To date, the most efficient scheme to create topological superfluids and Majorana fermions is based on the Sau-Lutchyn-Tewari-Das Sarma model with a Rashba-type spin-orbit coupling on the x-y plane and a large out-of-plane (perpendicular) Zeeman field along the z direction. Here we propose an alternative setup, where the topological superfluid phase is driven by applying an in-plane Zeeman...
<p><strong>Figure 6.</strong> Position-resolved photoemission spectrum calculated with the parameter...
We systematically investigate the topological properties of spin polarized Rydberg-dressed fermionic...
A fundamental obstacle for achieving quantum computation is local decoherence. One way to circumvent...
Topological superfluids are recently discovered quantum matter that hosts topologically protected ga...
Topological superfluids usually refer to a superfluid state which is gapped in the bulk but metallic...
We investigate theoretically the prospect of realizing a topological superfluid in one-dimensional s...
Abstract. We propose an experimental implementation of a topological superfluid with ultracold fermi...
We analyze the effects of in-and out-of-plane Zeeman fields on the BCS-Bose-Einstein condensation (B...
We theoretically investigate the superfluid density and Berezinskii-Kosterlitz-Thouless (BKT) transi...
Motivated by recent experimental breakthroughs in generating spin-orbit coupling in ultracold Fermi ...
Abstract. We propose an experimental implementation of a topological superfluid with ultracold fermi...
We theoretically predict a topological matter-topological inhomogeneous Fulde-Ferrell superfluid-in ...
<p><b>Table B1.</b> Table of numerical values for the magnetic field direction and laser directions/...
© 2021, The Author(s). Majorana bound states provide a fertile ground for both investigation of fund...
The twodimensional chiral p-wave superfluid is known to be topological, with gapless Majorana states...
<p><strong>Figure 6.</strong> Position-resolved photoemission spectrum calculated with the parameter...
We systematically investigate the topological properties of spin polarized Rydberg-dressed fermionic...
A fundamental obstacle for achieving quantum computation is local decoherence. One way to circumvent...
Topological superfluids are recently discovered quantum matter that hosts topologically protected ga...
Topological superfluids usually refer to a superfluid state which is gapped in the bulk but metallic...
We investigate theoretically the prospect of realizing a topological superfluid in one-dimensional s...
Abstract. We propose an experimental implementation of a topological superfluid with ultracold fermi...
We analyze the effects of in-and out-of-plane Zeeman fields on the BCS-Bose-Einstein condensation (B...
We theoretically investigate the superfluid density and Berezinskii-Kosterlitz-Thouless (BKT) transi...
Motivated by recent experimental breakthroughs in generating spin-orbit coupling in ultracold Fermi ...
Abstract. We propose an experimental implementation of a topological superfluid with ultracold fermi...
We theoretically predict a topological matter-topological inhomogeneous Fulde-Ferrell superfluid-in ...
<p><b>Table B1.</b> Table of numerical values for the magnetic field direction and laser directions/...
© 2021, The Author(s). Majorana bound states provide a fertile ground for both investigation of fund...
The twodimensional chiral p-wave superfluid is known to be topological, with gapless Majorana states...
<p><strong>Figure 6.</strong> Position-resolved photoemission spectrum calculated with the parameter...
We systematically investigate the topological properties of spin polarized Rydberg-dressed fermionic...
A fundamental obstacle for achieving quantum computation is local decoherence. One way to circumvent...