We study the effects of laser-induced Rashba-like spin-orbit coupling along the Bardeen-Cooper-Schrieffer\u2013Bose-Einstein condensate (BCS-BEC) crossover of a Feshbach resonance for a two-spin-component Fermi gas. We calculate the condensate fraction in three and two dimensions and find that this quantity characterizes the crossover better than other quantities, like the chemical potential or the pairing gap. By considering both the singlet and the triplet pairings, we calculate the condensate fraction and show that a large-enough spin-orbit interaction enhances the singlet condensate fraction in the BCS side while suppressing it on the BEC side
We explore the evolution of an ultracold quantum gas of interacting fermions crossing from a Bardeen...
Motivated by the prospect of realizing a Fermi gas with a synthetic non-Abelian gauge field, we inve...
This dissertation presents the theoretical study of two-component fermionic gases. It firstly studie...
We investigate the pair condensation of a two-spin component Fermi gas in the presence of both Rashb...
We investigate the Bose-Einstein condensation of fermionic pairs in a uniform two-component Fermi ga...
We extend our previous investigations of fermionic condensation in broad Feshbach resonances by usin...
This dissertation introduces some new properties of both superfluid phases of fermions with spin-orb...
We analyze the crossover from the Bardeen-Cooper-Schrieffer (BCS) state of weakly bound Fermi pairs ...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
Consider the problem of the T = 0 state of a gas of interacting spin-12 fermions. As the interaction...
We investigate a two-component Fermi gas with unequal spin populations along the BCS–BEC crossover. ...
Here we consider both balanced and imbalanced Fermi gases throughout the BCS-BEC evolution, and we s...
By adopting a T-matrix-based method within the G0G approximation for the pair susceptibility, we stu...
The possibility of employing cold atomic gases as emulators of condensed matter Hamiltonians has got...
We investigate the Bose-Einstein condensation of fermionic pairs in a two-dimensional uniform two-co...
We explore the evolution of an ultracold quantum gas of interacting fermions crossing from a Bardeen...
Motivated by the prospect of realizing a Fermi gas with a synthetic non-Abelian gauge field, we inve...
This dissertation presents the theoretical study of two-component fermionic gases. It firstly studie...
We investigate the pair condensation of a two-spin component Fermi gas in the presence of both Rashb...
We investigate the Bose-Einstein condensation of fermionic pairs in a uniform two-component Fermi ga...
We extend our previous investigations of fermionic condensation in broad Feshbach resonances by usin...
This dissertation introduces some new properties of both superfluid phases of fermions with spin-orb...
We analyze the crossover from the Bardeen-Cooper-Schrieffer (BCS) state of weakly bound Fermi pairs ...
We briefly review recent progress on ultracold atomic Fermi gases with different types of synthetic ...
Consider the problem of the T = 0 state of a gas of interacting spin-12 fermions. As the interaction...
We investigate a two-component Fermi gas with unequal spin populations along the BCS–BEC crossover. ...
Here we consider both balanced and imbalanced Fermi gases throughout the BCS-BEC evolution, and we s...
By adopting a T-matrix-based method within the G0G approximation for the pair susceptibility, we stu...
The possibility of employing cold atomic gases as emulators of condensed matter Hamiltonians has got...
We investigate the Bose-Einstein condensation of fermionic pairs in a two-dimensional uniform two-co...
We explore the evolution of an ultracold quantum gas of interacting fermions crossing from a Bardeen...
Motivated by the prospect of realizing a Fermi gas with a synthetic non-Abelian gauge field, we inve...
This dissertation presents the theoretical study of two-component fermionic gases. It firstly studie...