We compute the absorption spectrum of strongly repulsive one-dimensional bosons in a disordered or quasiperiodic optical lattice. At commensurate filling, the particle-hole resonances of the Mott insulator are broadened as the disorder strength is increased. In the noncommensurate case, mapping the problem to the Anderson model allows us to study the Bose-glass phase. Surprisingly, we find that a perturbative treatment in both cases, weak and strong disorders, gives a good description at all frequencies. In particular, we find that the infrared-absorption rate in the thermodynamic limit is quadratic in frequency. This result is unexpected since for other quantities, like the conductivity in one-dimensional systems, perturbation theory is on...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
International audienceLattice modulation spectroscopy is a powerful tool for probing low-energy exci...
We compute the absorption spectrum of strongly repulsive one-dimensional bosons in a disordered or q...
We compute the absorption spectrum of strongly repulsive one-dimensional bosons in a disordered or q...
International audienceThe extended effective multiorbital Bose–Hubbard-type Hamiltonian which takes ...
We present a nonperturbative analysis of a new experimental technique for probing ultracold bosons i...
Motivated by the recent rapid development of the field of quantum gases in optical lattices, we pres...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
Lattice modulation spectroscopy is a powerful tool for probing low-energy excitations of interacting...
An ultracold atomic Bose gas in an optical lattice is shown to provide an ideal system for the contr...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
International audienceLattice modulation spectroscopy is a powerful tool for probing low-energy exci...
We compute the absorption spectrum of strongly repulsive one-dimensional bosons in a disordered or q...
We compute the absorption spectrum of strongly repulsive one-dimensional bosons in a disordered or q...
International audienceThe extended effective multiorbital Bose–Hubbard-type Hamiltonian which takes ...
We present a nonperturbative analysis of a new experimental technique for probing ultracold bosons i...
Motivated by the recent rapid development of the field of quantum gases in optical lattices, we pres...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
Lattice modulation spectroscopy is a powerful tool for probing low-energy excitations of interacting...
An ultracold atomic Bose gas in an optical lattice is shown to provide an ideal system for the contr...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
We compute the energy absorbed by a one-dimensional system of cold bosonic atoms in an optical latti...
International audienceLattice modulation spectroscopy is a powerful tool for probing low-energy exci...