We study the Mott-insulator transition of bosonic atoms in optical lattices. Using perturbation theory, we analyze the deviations from the mean-field Gutzwiller ansatz, which become appreciable for intermediate values of the ratio between hopping amplitude and interaction energy. We discuss corrections to number fluctuations, order parameter, and compressibility. In particular, we improve the description of the short-range correlations in the one-particle density matrix. These corrections are important for experimentally observed expansion patterns, both for bulk lattices and in a confining trap potential
We present a simple scheme to evaluate linear response functions including quantum fluctuation corre...
We present a simple scheme to evaluate linear response functions including quantum fluctuation corre...
We reformulate the time-dependent Gutzwiller approximation by M. Schir\'o and M. Fabrizio [Phys. Rev...
We study the Mott-insulator transition of bosonic atoms in optical lattices. Using perturbation theo...
We provide a rigorous derivation of Gutzwiller mean-field dynamics for lattice bosons, showing that ...
We provide a rigorous derivation of Gutzwiller mean-field dynamics for lattice bosons, showing that ...
The one-dimensional Hubbard model is investigated by means of two different cluster schemes suited t...
The one-dimensional Hubbard model is investigated by means of two different cluster schemes suited t...
The Mott metal-insulator transition in the Hubbard model is studied by constructing a dynamical slav...
The Mott metal-insulator transition in the Hubbard model is studied by constructing a dynamical slav...
8 pages, 6 figures; (v2) Two references addedWe present a strong-coupling expansion of the Bose-Hubb...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
The standard mean-field theory for the Mott-insulator–superfluid phase transition is not sufficient ...
The standard mean-field theory for the Mott-insulator–superfluid phase transition is not sufficient ...
The standard mean-field theory for the Mott-insulator–superfluid phase transition is not sufficient ...
We present a simple scheme to evaluate linear response functions including quantum fluctuation corre...
We present a simple scheme to evaluate linear response functions including quantum fluctuation corre...
We reformulate the time-dependent Gutzwiller approximation by M. Schir\'o and M. Fabrizio [Phys. Rev...
We study the Mott-insulator transition of bosonic atoms in optical lattices. Using perturbation theo...
We provide a rigorous derivation of Gutzwiller mean-field dynamics for lattice bosons, showing that ...
We provide a rigorous derivation of Gutzwiller mean-field dynamics for lattice bosons, showing that ...
The one-dimensional Hubbard model is investigated by means of two different cluster schemes suited t...
The one-dimensional Hubbard model is investigated by means of two different cluster schemes suited t...
The Mott metal-insulator transition in the Hubbard model is studied by constructing a dynamical slav...
The Mott metal-insulator transition in the Hubbard model is studied by constructing a dynamical slav...
8 pages, 6 figures; (v2) Two references addedWe present a strong-coupling expansion of the Bose-Hubb...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
The standard mean-field theory for the Mott-insulator–superfluid phase transition is not sufficient ...
The standard mean-field theory for the Mott-insulator–superfluid phase transition is not sufficient ...
The standard mean-field theory for the Mott-insulator–superfluid phase transition is not sufficient ...
We present a simple scheme to evaluate linear response functions including quantum fluctuation corre...
We present a simple scheme to evaluate linear response functions including quantum fluctuation corre...
We reformulate the time-dependent Gutzwiller approximation by M. Schir\'o and M. Fabrizio [Phys. Rev...