We investigate the ground-state properties of a newly discovered phase of one-dimensional lattice bosons with extended interactions [E. G. Dalla Torre et al., Phys. Rev. Lett. 97, 260401 (2006)]. The new phase, termed the Haldane insulator in analogy with the gapped phase of spin-1 chains, is characterized by a nonlocal order parameter, which can only be written as an infinite string in terms of the bosonic densities. We show that the string order can nevertheless be probed with physical fields that couple locally, via the effect those fields have on the quantum phase transitions separating the exotic phase from the conventional Mott and density wave phases. Using a field theoretical analysis, we show that a perturbation that breaks lattice...
International audienceUsing density matrix renormalization group numerical calculations, we study th...
We study the ground-state physics of a single-component Haldane model on a hexagonal two-leg ladder ...
International audienceUsing density matrix renormalization group numerical calculations, we study th...
The Haldane phase (HP) is a paradigmatic example of symmetry protected topological phase. We explore...
It is shown that the Mott insulating and superfluid phases of bosons in an optical lattice may be di...
25 pages, 20 figuresInternational audienceWe investigate the nature of the Mott-insulating phases of...
It is shown that the Mott insulating and superfluid phases of bosons in an optical lattice may be di...
We consider the feasibility of creating a phase of neutral bosonic atoms in which multiple Mott-insu...
We consider the feasibility of creating a phase of neutral bosonic atoms in which multiple Mott-insu...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
The opening of a charge gap driven by interaction is a fingerprint of the transition to a Mott insul...
We numerically study the phase diagram of bosons tightly trapped in the lowest band of an optical la...
We study interacting bosons in optical lattices in the weak-tunneling regime in systems that exhibit...
We study interacting bosons in optical lattices in the weak-tunneling regime in systems that exhibit...
Quantum phases of matter are characterized by the underlying correlations of the many-body system. A...
International audienceUsing density matrix renormalization group numerical calculations, we study th...
We study the ground-state physics of a single-component Haldane model on a hexagonal two-leg ladder ...
International audienceUsing density matrix renormalization group numerical calculations, we study th...
The Haldane phase (HP) is a paradigmatic example of symmetry protected topological phase. We explore...
It is shown that the Mott insulating and superfluid phases of bosons in an optical lattice may be di...
25 pages, 20 figuresInternational audienceWe investigate the nature of the Mott-insulating phases of...
It is shown that the Mott insulating and superfluid phases of bosons in an optical lattice may be di...
We consider the feasibility of creating a phase of neutral bosonic atoms in which multiple Mott-insu...
We consider the feasibility of creating a phase of neutral bosonic atoms in which multiple Mott-insu...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
The opening of a charge gap driven by interaction is a fingerprint of the transition to a Mott insul...
We numerically study the phase diagram of bosons tightly trapped in the lowest band of an optical la...
We study interacting bosons in optical lattices in the weak-tunneling regime in systems that exhibit...
We study interacting bosons in optical lattices in the weak-tunneling regime in systems that exhibit...
Quantum phases of matter are characterized by the underlying correlations of the many-body system. A...
International audienceUsing density matrix renormalization group numerical calculations, we study th...
We study the ground-state physics of a single-component Haldane model on a hexagonal two-leg ladder ...
International audienceUsing density matrix renormalization group numerical calculations, we study th...