We show that multichannel interactions significantly alter the phase diagram of ultracold bosonic molecules in an optical lattice. Most prominently, an unusual fluid region intervenes between the conventional superfluid and the Mott insulator. In it, number fluctuations remain but phase coherence is suppressed by a significant factor. This factor can be made arbitrarily large, at least in a two-site configuration. We calculate the phase diagram using complementary methods, including Gutzwiller mean-field and density-matrix renormalization group calculations. Although we focus on bosonic molecules without dipolar interactions, we expect multichannel interactions to remain important for dipolar interacting and fermionic molecules
We analyze the ground-state properties of three-body constrained bosons in a one-dimensional optical...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems simi-lar to soli...
This thesis concerns ultracold two-dimensional atomic gases and the associated novel superfluid phas...
We report the observation of many-body interaction effects for a homonuclear bosonic mixture in a th...
A first-order type phase transition between Mott lobes has been reported in Phys. Rev. Lett. 109, 13...
We study fermionic superfluidity in an ultracold Bose-Fermi mixture loaded into a square optical lat...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
The influence of disorder on ultracold atomic Bose gases in optical lattices is discussed in the fra...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
We investigate quantum phase transitions occurring in a system of strongly interacting ultracold bos...
10 pages, RevTeX 4, 9 Encapsulated Postscript figure filesInternational audienceWe determine the pha...
We present the theoretical mean-field zero-temperature phase diagram of a Bose-Einstein condensate (...
We reveal a generic mechanism of generating sign-alternating intersite interactions mediated by stro...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
Recent experimental advances in realizing degenerate quantum dipolar gases in optical lattices and t...
We analyze the ground-state properties of three-body constrained bosons in a one-dimensional optical...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems simi-lar to soli...
This thesis concerns ultracold two-dimensional atomic gases and the associated novel superfluid phas...
We report the observation of many-body interaction effects for a homonuclear bosonic mixture in a th...
A first-order type phase transition between Mott lobes has been reported in Phys. Rev. Lett. 109, 13...
We study fermionic superfluidity in an ultracold Bose-Fermi mixture loaded into a square optical lat...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
The influence of disorder on ultracold atomic Bose gases in optical lattices is discussed in the fra...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
We investigate quantum phase transitions occurring in a system of strongly interacting ultracold bos...
10 pages, RevTeX 4, 9 Encapsulated Postscript figure filesInternational audienceWe determine the pha...
We present the theoretical mean-field zero-temperature phase diagram of a Bose-Einstein condensate (...
We reveal a generic mechanism of generating sign-alternating intersite interactions mediated by stro...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
Recent experimental advances in realizing degenerate quantum dipolar gases in optical lattices and t...
We analyze the ground-state properties of three-body constrained bosons in a one-dimensional optical...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems simi-lar to soli...
This thesis concerns ultracold two-dimensional atomic gases and the associated novel superfluid phas...