We consider fermionic polar molecules in a bilayer geometry where they are oriented perpendicularly to the layers, which permits both low inelastic losses and superfluid pairing. The dipole-dipole interaction between molecules of different layers leads to the emergence of interlayer superfluids. The superfluid regimes range from BCS-like fermionic superfluidity with a high Tc to Bose-Einstein (quasi-)condensation of interlayer dimers, thus exhibiting a peculiar BCS-Bose-Einstein condensation crossover. We show that one can cover the entire crossover regime under current experimental conditions
We study resonantly-paired s-wave superfluidity in a degenerate gas of two species (hyperfine states...
We study the crossover from the Bardeen–Cooper–Shrieffer regime to the Bose–Einstein-condensation re...
Fermionic superfluidity requires the formation of particle pairs, the size of which varies from the ...
We investigate the quantum and thermal phase diagram of fermionic polar molecules loaded in a bilaye...
This Ph.D. thesis reports on the first experiments with an ultracold gas of fermionic 6Li atoms in t...
The realization of superfluidity in a dilute gas of fermionic atoms, analogous to superconductivity ...
5+13 pages, 3+9 figures, including Supplemental MaterialInternational audienceWe study the phase dia...
We consider the ground state of a bilayer system of dipolar bosons, where dipoles are oriented by an...
Layered bosonic dipolar fluids have been suggested to host a condensate of interlayer molecular boun...
We study the occurrence of excitonic superfluidity in electron-hole bilayers at zero temperature. We...
The aim of the present thesis is to explore the crossover in a quantum atomic gas of attractively-in...
We consider the BCS-BEC (Bose-Einstein-condensate) crossover for a system of trapped Fermi atoms at...
This dissertation presents the theoretical study of two-component fermionic gases. It firstly studie...
Aim of this thesis work is to explore the evolution of superfluidity in a quantum gas of interacting...
We investigate a two-component Fermi gas with unequal spin populations along the BCS\u2013BEC crosso...
We study resonantly-paired s-wave superfluidity in a degenerate gas of two species (hyperfine states...
We study the crossover from the Bardeen–Cooper–Shrieffer regime to the Bose–Einstein-condensation re...
Fermionic superfluidity requires the formation of particle pairs, the size of which varies from the ...
We investigate the quantum and thermal phase diagram of fermionic polar molecules loaded in a bilaye...
This Ph.D. thesis reports on the first experiments with an ultracold gas of fermionic 6Li atoms in t...
The realization of superfluidity in a dilute gas of fermionic atoms, analogous to superconductivity ...
5+13 pages, 3+9 figures, including Supplemental MaterialInternational audienceWe study the phase dia...
We consider the ground state of a bilayer system of dipolar bosons, where dipoles are oriented by an...
Layered bosonic dipolar fluids have been suggested to host a condensate of interlayer molecular boun...
We study the occurrence of excitonic superfluidity in electron-hole bilayers at zero temperature. We...
The aim of the present thesis is to explore the crossover in a quantum atomic gas of attractively-in...
We consider the BCS-BEC (Bose-Einstein-condensate) crossover for a system of trapped Fermi atoms at...
This dissertation presents the theoretical study of two-component fermionic gases. It firstly studie...
Aim of this thesis work is to explore the evolution of superfluidity in a quantum gas of interacting...
We investigate a two-component Fermi gas with unequal spin populations along the BCS\u2013BEC crosso...
We study resonantly-paired s-wave superfluidity in a degenerate gas of two species (hyperfine states...
We study the crossover from the Bardeen–Cooper–Shrieffer regime to the Bose–Einstein-condensation re...
Fermionic superfluidity requires the formation of particle pairs, the size of which varies from the ...