We study the Hubbard-Holstein model using slave-boson mean-field and a variational Lang-Firsov transformation. We identify weak and strong e-ph coupling solutions, whose stability depends both on the bare e-ph coupling and on the correlation strength. At mean field level the evolution from weak to strong electron-phonon coupling occurs via a first-order polaronic transition if the adiabatic parameter is below a critical value. In the strongly correlated regime and in the adiabatic limit, the region in which the weak-coupling solution is stable is sizeably enlarged with respect to the weakly correlated system and the Mott metal-insulator transition is found to be robust with respect to e-ph interaction. RI Raimondi, Roberto/C-7176-2009; Capo...
Using the dynamical mean field theory we show that an electron - phonon interaction can revert the e...
We investigate the periodic Anderson-Holstein model by using the dynamical mean-field theory combine...
The properties of the electron-phonon interaction in the presence of a sizable electronic repulsion ...
We study the Hubbard-Holstein model using slave-boson mean-field and a variational Lang-Firsov trans...
We investigate the interaction of strongly correlated electrons with phonons in the frame of the Hub...
We investigate the interaction of strongly correlated electrons with phonons in the frame of the Hub...
The Holstein Molecular Crystal Model is investigated by a strong coupling perturbative method which,...
The density-driven Mott transition is studied by means of dynamical mean-field theory in the Hubbard...
The effects of electron-phonon interaction on the electronic properties of a strongly correlated met...
The evolution of the properties of a finite density electronic system as a function of the electron-...
The Hubbard-Holstein model is a simple model including both electron-phonon interaction and electron...
We investigate polaron formation in a many-electron system in the presence of a local repulsion suff...
We consider the Hubbard-Holstein model in the adiabatic limit to investigate the effects of electron...
Many condensed matter problems involve a particle coupled to its environment. The polaron, originall...
Using the dynamical mean field theory we show that an electron - phonon interaction can revert the e...
We investigate the periodic Anderson-Holstein model by using the dynamical mean-field theory combine...
The properties of the electron-phonon interaction in the presence of a sizable electronic repulsion ...
We study the Hubbard-Holstein model using slave-boson mean-field and a variational Lang-Firsov trans...
We investigate the interaction of strongly correlated electrons with phonons in the frame of the Hub...
We investigate the interaction of strongly correlated electrons with phonons in the frame of the Hub...
The Holstein Molecular Crystal Model is investigated by a strong coupling perturbative method which,...
The density-driven Mott transition is studied by means of dynamical mean-field theory in the Hubbard...
The effects of electron-phonon interaction on the electronic properties of a strongly correlated met...
The evolution of the properties of a finite density electronic system as a function of the electron-...
The Hubbard-Holstein model is a simple model including both electron-phonon interaction and electron...
We investigate polaron formation in a many-electron system in the presence of a local repulsion suff...
We consider the Hubbard-Holstein model in the adiabatic limit to investigate the effects of electron...
Many condensed matter problems involve a particle coupled to its environment. The polaron, originall...
Using the dynamical mean field theory we show that an electron - phonon interaction can revert the e...
We investigate the periodic Anderson-Holstein model by using the dynamical mean-field theory combine...
The properties of the electron-phonon interaction in the presence of a sizable electronic repulsion ...