We employ ultracold atoms with controllable disorder and interaction to study the paradigmatic problem of disordered bosons in the full disorder-interaction plane. Combining measurements of coherence, transport and excitation spectra, we get evidence of an insulating regime extending from weak to strong interaction and surrounding a superfluidlike regime, in general agreement with the theory. For strong interaction, we reveal the presence of a strongly correlated Bose glass coexisting with a Mott insulator
Disorder is everywhere in nature and it has a fundamental impact on the behavior of many quantum sys...
We study a one-dimensional disordered quantum fluid with linearly confining interactions (disordered...
We study the zero-temperature superfluid-insulator transition for a two-dimensional model of interac...
We employ ultracold atoms with controllable disorder and interaction to study the paradigmatic probl...
We experimentally studied the transport properties of ultracold bosonic atoms trapped in a disorder...
The study of the disordered Bose-Hubbard model is key to understanding the interplay of disorder and...
We present a field-theory description of ultracold bosonic atoms in the presence of a disordered ext...
The influence of disorder on ultracold atomic Bose gases in optical lattices is discussed in the fra...
We analyze the effects of disorder and quasidisorder on the ground-state properties of ultracold pol...
I describe in these notes the physical properties of one dimensional interacting quantum particles. ...
The phase diagrams and phase transitions of bosons with short-ranged repulsive interactions moving i...
Using a strong disorder real-space renormalization group, we study the phase diagram of a fully diso...
We have studied the effects of a disordered optical potential on the transport and phase coherence o...
Recent experiments with ultracold atoms in an optical lattice have realized cavity-mediated long-ran...
We investigate the instabilities of the Mott-insulating phase of the weakly disordered Bose-Hubbard ...
Disorder is everywhere in nature and it has a fundamental impact on the behavior of many quantum sys...
We study a one-dimensional disordered quantum fluid with linearly confining interactions (disordered...
We study the zero-temperature superfluid-insulator transition for a two-dimensional model of interac...
We employ ultracold atoms with controllable disorder and interaction to study the paradigmatic probl...
We experimentally studied the transport properties of ultracold bosonic atoms trapped in a disorder...
The study of the disordered Bose-Hubbard model is key to understanding the interplay of disorder and...
We present a field-theory description of ultracold bosonic atoms in the presence of a disordered ext...
The influence of disorder on ultracold atomic Bose gases in optical lattices is discussed in the fra...
We analyze the effects of disorder and quasidisorder on the ground-state properties of ultracold pol...
I describe in these notes the physical properties of one dimensional interacting quantum particles. ...
The phase diagrams and phase transitions of bosons with short-ranged repulsive interactions moving i...
Using a strong disorder real-space renormalization group, we study the phase diagram of a fully diso...
We have studied the effects of a disordered optical potential on the transport and phase coherence o...
Recent experiments with ultracold atoms in an optical lattice have realized cavity-mediated long-ran...
We investigate the instabilities of the Mott-insulating phase of the weakly disordered Bose-Hubbard ...
Disorder is everywhere in nature and it has a fundamental impact on the behavior of many quantum sys...
We study a one-dimensional disordered quantum fluid with linearly confining interactions (disordered...
We study the zero-temperature superfluid-insulator transition for a two-dimensional model of interac...