We consider a two-component Fermi gas in the presence of spin imbalance, modeling the system in terms of a one-dimensional attractive Hubbard Hamiltonian initially in the presence of a confining trap potential. With the aid of the time-evolving block decimation method, we investigate the dynamics of the initial state when the trap is switched off. We show that the dynamics of a gas initially in the Fulde-Ferrel-Larkin-Ovchinnikov (FFLO) state is decomposed into the independent expansion of two fluids, namely the paired and the unpaired particles. In particular, the expansion velocity of the unpaired cloud is shown to be directly related to the FFLO momentum. This provides an unambiguous signature of the FFLO state in a remarkably simple way...
We propose a two-step experimental protocol to directly engineer Fulde-Ferrell-Larkin-Ovchinnikov (F...
We study the interplay between population imbalance in a two-component fermionic system and nearest-...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...
We study the sudden expansion of spin-imbalanced ultracold lattice fermions with attractive interact...
In this Letter we consider a spin-imbalanced two-component attractive Fermi gas loaded in a 1D optic...
We study an effect of rotation on the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state of two-component...
We have studied the distinctive features of the Fulde-Ferrel-Larkin-Ovchinnikov (FFLO) instability a...
We explore the pairing properties of the one-dimensional attractive Hubbard model in the presence of...
4 pagesInternational audienceWe present an exact quantum Monte Carlo study of the attractive one-dim...
Expansion dynamics of interacting fermions in a lattice is simulated within the one-dimensional (1D)...
We study the phase diagram of an imbalanced two-component Fermi gas in optical lattices of 1-3 dimen...
We present a full phase diagram for the one-dimensional (1D) to three-dimensional (3D) crossover of ...
Ultracold atomic gases have emerged as an ideal laboratory system to emulate many-body physics in an...
We consider the density response of a spin-imbalanced ultracold Fermi gas in an optical lattice in t...
We study the superfluid properties of two-dimensional spin-population-imbalanced Fermi gases to expl...
We propose a two-step experimental protocol to directly engineer Fulde-Ferrell-Larkin-Ovchinnikov (F...
We study the interplay between population imbalance in a two-component fermionic system and nearest-...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...
We study the sudden expansion of spin-imbalanced ultracold lattice fermions with attractive interact...
In this Letter we consider a spin-imbalanced two-component attractive Fermi gas loaded in a 1D optic...
We study an effect of rotation on the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state of two-component...
We have studied the distinctive features of the Fulde-Ferrel-Larkin-Ovchinnikov (FFLO) instability a...
We explore the pairing properties of the one-dimensional attractive Hubbard model in the presence of...
4 pagesInternational audienceWe present an exact quantum Monte Carlo study of the attractive one-dim...
Expansion dynamics of interacting fermions in a lattice is simulated within the one-dimensional (1D)...
We study the phase diagram of an imbalanced two-component Fermi gas in optical lattices of 1-3 dimen...
We present a full phase diagram for the one-dimensional (1D) to three-dimensional (3D) crossover of ...
Ultracold atomic gases have emerged as an ideal laboratory system to emulate many-body physics in an...
We consider the density response of a spin-imbalanced ultracold Fermi gas in an optical lattice in t...
We study the superfluid properties of two-dimensional spin-population-imbalanced Fermi gases to expl...
We propose a two-step experimental protocol to directly engineer Fulde-Ferrell-Larkin-Ovchinnikov (F...
We study the interplay between population imbalance in a two-component fermionic system and nearest-...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...