International audienceWe investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays of tubes emulating the one-dimensional Bose-Hubbard model. We demonstrate, using both time-dependent density-matrix renormalization-group and linear response theory, that such a superlattice modulation gives access to the excitation spectrum of the Bose-Hubbard model at finite momenta. Deep in the Mott insulator, the response is characterized by a narrow energy-absorption peak at a frequency approximately corresponding to the on-site interaction strength between bosons. This spectroscopic technique thus allows for an accurate measurement of the effective value of the interaction strength. On the superfluid side, we show t...
Lattice modulation spectroscopy is a powerful tool for probing low-energy excitations of interacting...
International audienceLattice modulation spectroscopy is a powerful tool for probing low-energy exci...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
Abstract. The dynamic response of ultracold Bose gases in one-dimensional optical lattices and super...
We present a detailed analysis of the dynamical response of ultracold bosonic atoms in a one-dimensi...
We present a detailed analysis of the dynamical response of ultracold bosonic atoms in a one-dimensi...
Motivated by the recent rapid development of the field of quantum gases in optical lattices, we pres...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
Lattice modulation spectroscopy is a powerful tool for probing low-energy excitations of interacting...
International audienceLattice modulation spectroscopy is a powerful tool for probing low-energy exci...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
We investigate the response to superlattice modulation of a bosonic quantum gas confined to arrays o...
Abstract. The dynamic response of ultracold Bose gases in one-dimensional optical lattices and super...
We present a detailed analysis of the dynamical response of ultracold bosonic atoms in a one-dimensi...
We present a detailed analysis of the dynamical response of ultracold bosonic atoms in a one-dimensi...
Motivated by the recent rapid development of the field of quantum gases in optical lattices, we pres...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
Lattice modulation spectroscopy is a powerful tool for probing low-energy excitations of interacting...
International audienceLattice modulation spectroscopy is a powerful tool for probing low-energy exci...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...