We consider a quantum particle subject to Ohmic dissipation, moving in a bichromatic quasiperiodic potential. In a periodic potential the particle undergoes a zero-temperature localization-delocalization transition as dissipation strength is decreased. We show that the delocalized phase is absent in the quasiperiodic case, even when the deviation from periodicity is infinitesimal. Using the renormalization group, we determine how the effective localization length depends on the dissipation. We show that a similar problem can emerge in the strong-coupling limit of a mobile impurity moving in a periodic lattice and immersed in a one-dimensional quantum gas
Quantum Brownian motion in a periodic cosine potential is studied and a simple estimate of the tunne...
We investigate the zero-temperature metal-insulator transition in a one-dimensional two-component Fe...
We study the problem of two interacting particles in a two-dimensional quasiperiodic poten...
We consider a quantum particle subject to Ohmic dissipation, moving in a bichromatic quasiperiodic p...
Recent theoretical and numerical evidence suggests that localization can survive in disordered many-...
International audienceWe consider weakly interacting bosons in a 1D quasiperiodic potential (Aubry-A...
We consider weakly interacting bosons in a 1D quasiperiodic potential (Aubry-Azbel-Harper model) in ...
Recently it has been shown that interparticle interactions generically destroy dynamical localizatio...
Recent theories of scaling in quasiperiodic dynamical systems are applied to the behavior of a parti...
We compute the phase diagram of the one-dimensional Bose-Hubbard model with a quasiperiodic potentia...
Integrable models form pillars of theoretical physics because they allow for full analytical underst...
The dynamics of a one-dimensional two-component Fermi gas in the presence of a quasiperiodic optical...
International audienceQuasiperiodic systems offer an appealing intermediate between long-range order...
We consider a one dimensional many body fermionic system with a large incommensurate external potent...
Using a combination of numerically exact and renormalization-group techniques we study the nonequili...
Quantum Brownian motion in a periodic cosine potential is studied and a simple estimate of the tunne...
We investigate the zero-temperature metal-insulator transition in a one-dimensional two-component Fe...
We study the problem of two interacting particles in a two-dimensional quasiperiodic poten...
We consider a quantum particle subject to Ohmic dissipation, moving in a bichromatic quasiperiodic p...
Recent theoretical and numerical evidence suggests that localization can survive in disordered many-...
International audienceWe consider weakly interacting bosons in a 1D quasiperiodic potential (Aubry-A...
We consider weakly interacting bosons in a 1D quasiperiodic potential (Aubry-Azbel-Harper model) in ...
Recently it has been shown that interparticle interactions generically destroy dynamical localizatio...
Recent theories of scaling in quasiperiodic dynamical systems are applied to the behavior of a parti...
We compute the phase diagram of the one-dimensional Bose-Hubbard model with a quasiperiodic potentia...
Integrable models form pillars of theoretical physics because they allow for full analytical underst...
The dynamics of a one-dimensional two-component Fermi gas in the presence of a quasiperiodic optical...
International audienceQuasiperiodic systems offer an appealing intermediate between long-range order...
We consider a one dimensional many body fermionic system with a large incommensurate external potent...
Using a combination of numerically exact and renormalization-group techniques we study the nonequili...
Quantum Brownian motion in a periodic cosine potential is studied and a simple estimate of the tunne...
We investigate the zero-temperature metal-insulator transition in a one-dimensional two-component Fe...
We study the problem of two interacting particles in a two-dimensional quasiperiodic poten...