Ultracold atoms in optical lattices undergo a quantum phase transition from a superfluid to a Mott insulator as the lattice potential depth is increased. We describe an approximate theory of interacting bosons in optical lattices which provides a qualitative description of both superfluid and insulator states. The theory is based on a change of variables in which the boson coherent state amplitude is replaced by an effective potential which promotes phase coherence between different number states on each lattice site. It is illustrated here by applying it to uniform and fully frustrated lattice cases, but is simple enough that it can easily be applied to spatially inhomogeneous lattice system
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
Abstract: We extend the idea of quantum phase transitions of light in the photonic Bose-Hubbard mode...
We investigate the zero-temperature phase diagram of interacting Bose gases in the presence of a sim...
Ultracold atoms in optical lattices undergo a quantum phase transition from a superfluid to a Mott i...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems simi-lar to soli...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
In this work we present the modeling of possible interactions among N neutral atoms trapped in an op...
We present the zero-temperature phase diagram of bosonic atoms in an optical lattice, using two diff...
We present the zero-temperature phase diagram of bosonic atoms in an optical lattice, using two diff...
We study the Mott-insulator–superfluid transition of ultracold bosonic atoms in a two-dimensional sq...
We study the Mott-insulator–superfluid transition of ultracold bosonic atoms in a two-dimensional sq...
We study the Mott-insulator–superfluid transition of ultracold bosonic atoms in a two-dimensional sq...
We present the zero-temperature phase diagram of bosonic atoms in an optical lattice, using two diff...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
Abstract: We extend the idea of quantum phase transitions of light in the photonic Bose-Hubbard mode...
We investigate the zero-temperature phase diagram of interacting Bose gases in the presence of a sim...
Ultracold atoms in optical lattices undergo a quantum phase transition from a superfluid to a Mott i...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems simi-lar to soli...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
In this work we present the modeling of possible interactions among N neutral atoms trapped in an op...
We present the zero-temperature phase diagram of bosonic atoms in an optical lattice, using two diff...
We present the zero-temperature phase diagram of bosonic atoms in an optical lattice, using two diff...
We study the Mott-insulator–superfluid transition of ultracold bosonic atoms in a two-dimensional sq...
We study the Mott-insulator–superfluid transition of ultracold bosonic atoms in a two-dimensional sq...
We study the Mott-insulator–superfluid transition of ultracold bosonic atoms in a two-dimensional sq...
We present the zero-temperature phase diagram of bosonic atoms in an optical lattice, using two diff...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
Abstract: We extend the idea of quantum phase transitions of light in the photonic Bose-Hubbard mode...
We investigate the zero-temperature phase diagram of interacting Bose gases in the presence of a sim...