We study the Higgs mode of superfluid Bose gases in a three-dimensional optical lattice, which emerges near the quantum phase transition to the Mott insulator at commensurate fillings. Specifically, we consider responses of the Higgs mode to temporal modulations of the onsite interaction and the hopping energy. In order to calculate the response functions including the effects of quantum and thermal fluctuations, we map the Bose-Hubbard model onto an effective pseudospin-1 model and use a perturbative expansion based on the imaginary-time Green's function theory. We also include the effects of an inhomogeneous trapping potential by means of a local density approximation. We find that the response function for the hopping modulation is equal...
We study the collective excitations, i.e., the Goldstone (phase) mode and the Higgs (amplitude) mode...
15 pages, 13 figuresInternational audienceWe investigate the dynamics of Mott-insulating regions of ...
We study a linear ramp of the nearest-neighbor tunneling rate in the Bose-Hubbard model driving the ...
We study collective modes of superfluid Bose gases in optical lattices at commensurate fillings. We ...
Abstract. The dynamic response of ultracold Bose gases in one-dimensional optical lattices and super...
International audienceWe investigate the response to superlattice modulation of a bosonic quantum ga...
Spontaneous symmetry breaking plays a key role in our understanding of nature. In relativistic quant...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
The amplitude (Higgs) mode near the two-dimensional superfluid-Mott glass quantum phase transition i...
Motivated by the recent rapid development of the field of quantum gases in optical lattices, we pres...
We present a detailed analysis of the dynamical response of ultracold bosonic atoms in a one-dimensi...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
We study the superfluid-insulator transition in Bose-Hubbard models in one-, two-, and three-dimensi...
We demonstrate that an undamped few-body precursor of the Higgs mode can be investigated in a harmon...
We present a detailed analysis of the dynamical response of ultra-cold bosonic atoms in a one-dimens...
We study the collective excitations, i.e., the Goldstone (phase) mode and the Higgs (amplitude) mode...
15 pages, 13 figuresInternational audienceWe investigate the dynamics of Mott-insulating regions of ...
We study a linear ramp of the nearest-neighbor tunneling rate in the Bose-Hubbard model driving the ...
We study collective modes of superfluid Bose gases in optical lattices at commensurate fillings. We ...
Abstract. The dynamic response of ultracold Bose gases in one-dimensional optical lattices and super...
International audienceWe investigate the response to superlattice modulation of a bosonic quantum ga...
Spontaneous symmetry breaking plays a key role in our understanding of nature. In relativistic quant...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
The amplitude (Higgs) mode near the two-dimensional superfluid-Mott glass quantum phase transition i...
Motivated by the recent rapid development of the field of quantum gases in optical lattices, we pres...
We present a detailed analysis of the dynamical response of ultracold bosonic atoms in a one-dimensi...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
We study the superfluid-insulator transition in Bose-Hubbard models in one-, two-, and three-dimensi...
We demonstrate that an undamped few-body precursor of the Higgs mode can be investigated in a harmon...
We present a detailed analysis of the dynamical response of ultra-cold bosonic atoms in a one-dimens...
We study the collective excitations, i.e., the Goldstone (phase) mode and the Higgs (amplitude) mode...
15 pages, 13 figuresInternational audienceWe investigate the dynamics of Mott-insulating regions of ...
We study a linear ramp of the nearest-neighbor tunneling rate in the Bose-Hubbard model driving the ...