We investigate the phase diagram of a dimerized Bose-Hubbard model, using a density matrix renormalization group technique. We find a new phase, which is the coexistence of superfluid and bond-wave phases, due to the effect of dimerization. Experimentally dimerization in optical lattice can be realized by using two counterpropagating laser beams of different wavelengths. Apart from the conventional superfluid-to-Mott-insulator transition, we find a new quantum phase transition: from superfluid-bond-wave to Mott-insulator-bond wave phase. Our study suggests a rich phase diagram which can be easily probed
We use the Density Matrix Renormalization Group and the Abelian bosonization method to study the eff...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
We investigate the phase diagram of a dimerized Bose-Hubbard model, using a density matrix renormali...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
We use the finite-size, density-matrix-renormalization-group(DMRG) method to obtain the zero-tempera...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
We use the finite-size, density-matrix-renormalization-group (FSDMRG) method to obtain the phase dia...
We study the phase diagram for spin-2 bosons loaded in a one-dimensional optical lattice. By using t...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
We examine the effects of disorder on dimerized quantum antiferromagnets in a magnetic field, using ...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We use the Density Matrix Renormalization Group and the Abelian bosonization method to study the eff...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
We investigate the phase diagram of a dimerized Bose-Hubbard model, using a density matrix renormali...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
We use the finite-size, density-matrix-renormalization-group(DMRG) method to obtain the zero-tempera...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
We use the finite-size, density-matrix-renormalization-group (FSDMRG) method to obtain the phase dia...
We study the phase diagram for spin-2 bosons loaded in a one-dimensional optical lattice. By using t...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
Ultracold atomic gases in optical lattices provide an unique framework to study quantum phenomena in...
We examine the effects of disorder on dimerized quantum antiferromagnets in a magnetic field, using ...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We use the Density Matrix Renormalization Group and the Abelian bosonization method to study the eff...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...