26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous versionInternational audienceUnconventional strongly correlated phases of the repulsive Fermi-Hubbard model, which could be emulated by ultracold vapors loaded in optical lattices, are investigated by means of energy minimizations with quantum number projection before variation and without any assumed order parameter. In a tube-like geometry of optical plaquettes to realize the four-leg ladder Hubbard Hamiltonian, we highlight the intertwining of spin-, charge-, and pair-density waves embedded in a uniform d-wave superfluid background. As the lattice filling increases, this phase emerges from homogenous states exhibiting spiral magnetism and ev...
We consider the self-energy of strongly interacting fermions in the medium using gauge/gravity duali...
A simple yet paradigmatic model for the interplay of strong electronic correlations and geometric fr...
Recent experimental progress in magnetic atoms and polar molecules has created the prospect of simul...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
22 pages, 16 eps figures; caption of Fig. 5 correctedThe dynamical properties of an extended Hubbard...
We theoretically analyze the phase diagram of a quantum gas of bosons that interact via repulsive di...
We develop a novel approach to understand the phases of one-dimensional Bose-Hubbard models. We inte...
Abstract Proximity to magnetic order as well as low dimensionality are both beneficial to...
The Hubbard model constitutes one of the most celebrated theoretical frameworks of condensed-matter ...
We numerically study the phase diagram of bosons tightly trapped in the lowest band of an optical la...
We consider a condensate of ultra cold bosonic atoms in a linear optical cavity illuminated by a two...
We consider the self-energy of strongly interacting fermions in the medium using gauge/gravity duali...
A simple yet paradigmatic model for the interplay of strong electronic correlations and geometric fr...
Recent experimental progress in magnetic atoms and polar molecules has created the prospect of simul...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
26 pages, 15 figures ; replaced with the published manuscript ; substantial changes from previous ve...
22 pages, 16 eps figures; caption of Fig. 5 correctedThe dynamical properties of an extended Hubbard...
We theoretically analyze the phase diagram of a quantum gas of bosons that interact via repulsive di...
We develop a novel approach to understand the phases of one-dimensional Bose-Hubbard models. We inte...
Abstract Proximity to magnetic order as well as low dimensionality are both beneficial to...
The Hubbard model constitutes one of the most celebrated theoretical frameworks of condensed-matter ...
We numerically study the phase diagram of bosons tightly trapped in the lowest band of an optical la...
We consider a condensate of ultra cold bosonic atoms in a linear optical cavity illuminated by a two...
We consider the self-energy of strongly interacting fermions in the medium using gauge/gravity duali...
A simple yet paradigmatic model for the interplay of strong electronic correlations and geometric fr...
Recent experimental progress in magnetic atoms and polar molecules has created the prospect of simul...