We consider the density response of a spin-imbalanced ultracold Fermi gas in an optical lattice in the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state. We calculate the collective mode spectrum of the system in the generalized random-phase approximation and find that, although the collective modes are damped even at zero temperature, the damping is weak enough to have well-defined collective modes. We calculate the speed of sound in the gas and show that it is anisotropic due to the anisotropy of the FFLO pairing, which implies an experimental signature for the FFLO state.Peer reviewe
We characterize the collective modes of a soliton train in a quasi-one-dimensional Fermi superfluid,...
Fulde–Ferrell–Larkin–Ovchinnikov (FFLO) phases are superconducting phases in which Cooper pairs have...
We study an effect of rotation on the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state of two-component...
We consider the density response of a spin-imbalanced ultracold Fermi gas in an optical lattice in t...
A low-energy theory of the Nambu-Goldstone excitation spectrum and the corresponding speed of sound ...
We study collective excitations of a trapped Fermi gas at finite temperature using the Bogoliubov–de...
In this Letter we consider a spin-imbalanced two-component attractive Fermi gas loaded in a 1D optic...
We study theoretically the collective mode spectrum of a strongly imbalanced two-component unitary F...
We study the phase diagram of an imbalanced two-component Fermi gas in optical lattices of 1-3 dimen...
In this paper we study the density noise correlations of the two component Fermi gas in optical latt...
Phase diagrams and collective excitations are investigated for a trapped imbalanced Fermi gas in two...
Spin-polarized attractive Fermi gases in one-dimensional (1D) optical lattices are expected to be re...
We study the relationship between Tan's contact parameter and the macroscopic dynamic properties of ...
We explore the pairing properties of the one-dimensional attractive Hubbard model in the presence of...
We suggest that collective oscillation frequencies of cold trapped gases can be used as high precisi...
We characterize the collective modes of a soliton train in a quasi-one-dimensional Fermi superfluid,...
Fulde–Ferrell–Larkin–Ovchinnikov (FFLO) phases are superconducting phases in which Cooper pairs have...
We study an effect of rotation on the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state of two-component...
We consider the density response of a spin-imbalanced ultracold Fermi gas in an optical lattice in t...
A low-energy theory of the Nambu-Goldstone excitation spectrum and the corresponding speed of sound ...
We study collective excitations of a trapped Fermi gas at finite temperature using the Bogoliubov–de...
In this Letter we consider a spin-imbalanced two-component attractive Fermi gas loaded in a 1D optic...
We study theoretically the collective mode spectrum of a strongly imbalanced two-component unitary F...
We study the phase diagram of an imbalanced two-component Fermi gas in optical lattices of 1-3 dimen...
In this paper we study the density noise correlations of the two component Fermi gas in optical latt...
Phase diagrams and collective excitations are investigated for a trapped imbalanced Fermi gas in two...
Spin-polarized attractive Fermi gases in one-dimensional (1D) optical lattices are expected to be re...
We study the relationship between Tan's contact parameter and the macroscopic dynamic properties of ...
We explore the pairing properties of the one-dimensional attractive Hubbard model in the presence of...
We suggest that collective oscillation frequencies of cold trapped gases can be used as high precisi...
We characterize the collective modes of a soliton train in a quasi-one-dimensional Fermi superfluid,...
Fulde–Ferrell–Larkin–Ovchinnikov (FFLO) phases are superconducting phases in which Cooper pairs have...
We study an effect of rotation on the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state of two-component...