We show that single-component fermionic polar molecules confined to a 2D geometry and dressed by a microwave field may acquire an attractive 1/r(3) dipole-dipole interaction leading to superfluid p-wave pairing at sufficiently low temperatures even in the BCS regime. The emerging state is the topological p(x) + ip(y) phase promising for topologically protected quantum information processing. The main decay channel is via collisional transitions to dressed states with lower energies and is rather slow, setting a lifetime of the order of seconds at 2D densities similar to 10(8) cm(-2)
Recent work on ultracold polar molecules, governed by a generalization of the t-J Hamiltonian, sugge...
The search for topological superconductors is a challenging task1,2. One of the most promising direc...
We discuss techniques to tune and shape the long-range part of the interaction potentials in quantum...
Recently suggested subwavelength lattices offer remarkable prospects for the observation of novel su...
In a dipolar Fermi gas, the anisotropic interaction between electric dipoles can be turned into an e...
The twodimensional chiral p-wave superfluid is known to be topological, with gapless Majorana states...
14 pages, 4 figures; prepared for proceedings of the IV International Conference on Quantum Technolo...
Chiral p-wave superfluids are fascinating topological quantum states of matter that have been found ...
One of the challenging goals in the studies of many-body physics with ultracold atoms is the creatio...
We show that the interplay between antiferromagnetic interaction and hole motion gives rise to a top...
Abstract. We propose an experimental implementation of a topological superfluid with ultracold fermi...
11 pages, 9 figs (best viewed in color)International audienceWe study a rapidly rotating gas of unpo...
We theoretically predict a topological matter-topological inhomogeneous Fulde-Ferrell superfluid-in ...
We systematically investigate the topological properties of spin polarized Rydberg-dressed fermionic...
Realization of topological superconductors is one of the most important goals in studies of topologi...
Recent work on ultracold polar molecules, governed by a generalization of the t-J Hamiltonian, sugge...
The search for topological superconductors is a challenging task1,2. One of the most promising direc...
We discuss techniques to tune and shape the long-range part of the interaction potentials in quantum...
Recently suggested subwavelength lattices offer remarkable prospects for the observation of novel su...
In a dipolar Fermi gas, the anisotropic interaction between electric dipoles can be turned into an e...
The twodimensional chiral p-wave superfluid is known to be topological, with gapless Majorana states...
14 pages, 4 figures; prepared for proceedings of the IV International Conference on Quantum Technolo...
Chiral p-wave superfluids are fascinating topological quantum states of matter that have been found ...
One of the challenging goals in the studies of many-body physics with ultracold atoms is the creatio...
We show that the interplay between antiferromagnetic interaction and hole motion gives rise to a top...
Abstract. We propose an experimental implementation of a topological superfluid with ultracold fermi...
11 pages, 9 figs (best viewed in color)International audienceWe study a rapidly rotating gas of unpo...
We theoretically predict a topological matter-topological inhomogeneous Fulde-Ferrell superfluid-in ...
We systematically investigate the topological properties of spin polarized Rydberg-dressed fermionic...
Realization of topological superconductors is one of the most important goals in studies of topologi...
Recent work on ultracold polar molecules, governed by a generalization of the t-J Hamiltonian, sugge...
The search for topological superconductors is a challenging task1,2. One of the most promising direc...
We discuss techniques to tune and shape the long-range part of the interaction potentials in quantum...