We use the finite-size, density-matrix-renormalization-group (FSDMRG) method to obtain the phase diagram of the one-dimensional (d=1) extended Bose-Hubbard model for density rho=1 in the U-V plane, where U and V are, respectively, onsite and nearest-neighbor interactions. The phase diagram comprises three phases: superfluid (SF), Mott insulator (MI), and mass-density-wave (MDW). For small values of U and V, we get a reentrant SF-MI-SF phase transition. For intermediate values of interactions the SF phase is sandwiched between MI and MDW phases with continuous SF-MI and SF-MDW transitions. We show, by a detailed, finite-size scaling analysis, that the MI-SF transition is of Kosterlitz-Thouless (KT) type whereas the MDW-SF transition has both...
In order to identify possible experimental signatures of the superfluid to Mott-insulator quantum ph...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
We use the finite-size, density-matrix-renormalization-group (FSDMRG) method to obtain the phase dia...
We use the finite-size, density-matrix-renormalization-group (FSDMRG) method to obtain the phase dia...
We use the finite-size, density-matrix-renormalization-group(DMRG) method to obtain the zero-tempera...
By means of the density matrix renormalization group technique, we accurately determine the zero-tem...
By means of the density matrix renormalization group technique, we accurately determine the zero-tem...
By means of the density matrix renormalization group technique, we accurately determine the zero-tem...
Abstract. We use the finite-size, density-matrix-renormalization-group (DMRG) method to obtain the z...
We use the finite-size, density-matrix-renormalization-group(DMRG) method to obtain the zero-tempera...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
We use the density-matrix renormalization group method to investigate ground-state and dynamic prope...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
In order to identify possible experimental signatures of the superfluid to Mott-insulator quantum ph...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
We use the finite-size, density-matrix-renormalization-group (FSDMRG) method to obtain the phase dia...
We use the finite-size, density-matrix-renormalization-group (FSDMRG) method to obtain the phase dia...
We use the finite-size, density-matrix-renormalization-group(DMRG) method to obtain the zero-tempera...
By means of the density matrix renormalization group technique, we accurately determine the zero-tem...
By means of the density matrix renormalization group technique, we accurately determine the zero-tem...
By means of the density matrix renormalization group technique, we accurately determine the zero-tem...
Abstract. We use the finite-size, density-matrix-renormalization-group (DMRG) method to obtain the z...
We use the finite-size, density-matrix-renormalization-group(DMRG) method to obtain the zero-tempera...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
We use the density-matrix renormalization group method to investigate ground-state and dynamic prope...
We study the Bose-Hubbard model using the finite size density matrix renormalization group method. W...
In order to identify possible experimental signatures of the superfluid to Mott-insulator quantum ph...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...