A system with unequal populations of up and down fermions may exhibit a Larkin-Ovchinnikov (LO) phase consisting of a periodic arrangement of domain walls where the order parameter changes sign and the excess polarization is localized. We find that the LO phase has a much larger range of stability in a lattice compared to the continuum; in a harmonic trap, the LO phase may involve 80% of the atoms in the trap, and can exist up to an entropy s ∼ 0.5kB per fermion. We discuss detection of the LO phase (i) in real space by phase-contrast imaging of the periodic excess polarization; (ii) in k space by time-of-flight imaging of the single-particle and pair-momentum distributions; (iii) in energy space from the excess density of states within the...
In this Letter we consider a spin-imbalanced two-component attractive Fermi gas loaded in a 1D optic...
We theoretically investigate a Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) type superfluid phase transit...
It is shown by microscopic calculations for trapped imbalanced Fermi superfluids that the gap functi...
Superfluidity with imbalanced populations of harmonically trapped ultracold fermions in a two-dimens...
We present a systematic study of quantum phases in a one-dimensional spin-polarized Fermi gas. Three...
We calculate the zero-temperature (T = 0) phase diagram of a polarized two-component Fermi gas in an...
The ground-state phase diagram of attractively interacting Fermi gases in two dimensions with a popu...
Ground-state Hartree-Fock-Bogoliubov (HFB) theory is applied to imbalanced spin-1/2 one-dimensional ...
We consider pairing in a two- component atomic Fermi gas, in a three- dimensional optical lattice, w...
We study the phase diagram of an imbalanced two-component Fermi gas in optical lattices of 1-3 dimen...
Ultracold atomic gases have emerged as an ideal laboratory system to emulate many-body physics in an...
We study the phase diagram of an imbalanced two-component Fermi gas in optical lattices of 1-3 dimen...
We propose and analyze a variational wave function for a population-imbalanced one-dimensional Fermi...
Leveraging cutting-edge numerical methodologies, we study the ground state of the two-dimensional sp...
We investigate different ground-state phases of attractive spin-imbalanced populations of fermions i...
In this Letter we consider a spin-imbalanced two-component attractive Fermi gas loaded in a 1D optic...
We theoretically investigate a Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) type superfluid phase transit...
It is shown by microscopic calculations for trapped imbalanced Fermi superfluids that the gap functi...
Superfluidity with imbalanced populations of harmonically trapped ultracold fermions in a two-dimens...
We present a systematic study of quantum phases in a one-dimensional spin-polarized Fermi gas. Three...
We calculate the zero-temperature (T = 0) phase diagram of a polarized two-component Fermi gas in an...
The ground-state phase diagram of attractively interacting Fermi gases in two dimensions with a popu...
Ground-state Hartree-Fock-Bogoliubov (HFB) theory is applied to imbalanced spin-1/2 one-dimensional ...
We consider pairing in a two- component atomic Fermi gas, in a three- dimensional optical lattice, w...
We study the phase diagram of an imbalanced two-component Fermi gas in optical lattices of 1-3 dimen...
Ultracold atomic gases have emerged as an ideal laboratory system to emulate many-body physics in an...
We study the phase diagram of an imbalanced two-component Fermi gas in optical lattices of 1-3 dimen...
We propose and analyze a variational wave function for a population-imbalanced one-dimensional Fermi...
Leveraging cutting-edge numerical methodologies, we study the ground state of the two-dimensional sp...
We investigate different ground-state phases of attractive spin-imbalanced populations of fermions i...
In this Letter we consider a spin-imbalanced two-component attractive Fermi gas loaded in a 1D optic...
We theoretically investigate a Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) type superfluid phase transit...
It is shown by microscopic calculations for trapped imbalanced Fermi superfluids that the gap functi...