We derive an effective Hamiltonian for the two-dimensional Hubbard–Holstein model in the regimes of strong electron–electron and strong electron–phonon interactions by using a nonperturbative approach. In the parameter region where the system manifests the existence of a correlated singlet phase, the effective Hamiltonian transforms to a t1 − V 1 − V 2 − V 3 Hamiltonian for hard-core-bosons on a checkerboard lattice. We employ quantum Monte Carlo simulations, involving stochastic-series-expansion technique, to obtain the ground state phase diagram. At filling 1∕8, as the strength of off-site repulsion increases, the system undergoes a first-order transition from a superfluid to a diagonal striped solid with ordering wavevector $\vec{Q}$ = (...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
4 pages, 5 figuresWe present results of Quantum Monte Carlo simulations for the soft core extended b...
By using variational wave functions and quantum Monte Carlo techniques, we investigate the interplay...
9 pagesWe use two quantum Monte Carlo algorithms to map out the phase diagram of the two-dimensional...
We consider a two-species hard-core boson Hubbard model for a supersolid, where two types of bosons ...
We investigate numerically the ground state phase diagram of the one-dimensional extended H...
13 pagesWe use Quantum Monte Carlo simulations and exact diagonalization to explore the phase diagra...
The goal of this work was to continue the effort to develop numerical tools in order to understand t...
We obtain the complete phase diagram of the hard-core Bose-Hubbard model in the presence of a period...
UnrestrictedThe two-dimensional (2D) Hubbard model is solved in a new way. The zero-frequency compon...
AbstractThe electron–electron and electron–phonon interactions play an important role in correlated ...
We have applied Quantum Monte Carlo technique to study the supersolid phase of hardcore bosons with ...
We study unconventional superconductivity in two-dimensional systems. Unbiased numerical calculation...
[[abstract]]We report large scale determinant quantum Monte Carlo calculations of the effective band...
This thesis contains a series of numerical studies of strongly correlated electron systems. In these...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
4 pages, 5 figuresWe present results of Quantum Monte Carlo simulations for the soft core extended b...
By using variational wave functions and quantum Monte Carlo techniques, we investigate the interplay...
9 pagesWe use two quantum Monte Carlo algorithms to map out the phase diagram of the two-dimensional...
We consider a two-species hard-core boson Hubbard model for a supersolid, where two types of bosons ...
We investigate numerically the ground state phase diagram of the one-dimensional extended H...
13 pagesWe use Quantum Monte Carlo simulations and exact diagonalization to explore the phase diagra...
The goal of this work was to continue the effort to develop numerical tools in order to understand t...
We obtain the complete phase diagram of the hard-core Bose-Hubbard model in the presence of a period...
UnrestrictedThe two-dimensional (2D) Hubbard model is solved in a new way. The zero-frequency compon...
AbstractThe electron–electron and electron–phonon interactions play an important role in correlated ...
We have applied Quantum Monte Carlo technique to study the supersolid phase of hardcore bosons with ...
We study unconventional superconductivity in two-dimensional systems. Unbiased numerical calculation...
[[abstract]]We report large scale determinant quantum Monte Carlo calculations of the effective band...
This thesis contains a series of numerical studies of strongly correlated electron systems. In these...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
4 pages, 5 figuresWe present results of Quantum Monte Carlo simulations for the soft core extended b...
By using variational wave functions and quantum Monte Carlo techniques, we investigate the interplay...