We investigate metal-insulator transitions in the half-filled Holstein-Hubbard model as a function of the on-site electron-electron interaction U and the electron-phonon coupling g. We use several different numerical methods to calculate the phase diagram, the results of which are in excellent agreement. When the electron-electron interaction U is dominant the transition is to a Mott-insulator; when the electron-phonon interaction dominates, the transition is to a localised bipolaronic state. In the former case, the transition is always found to be second order. This is in contrast to the transition to the bipolaronic state, which is clearly first order for larger values of U. We also present results for the quasiparticle weight and the dou...
Interplay of strong electron correlation and electron-phonon interaction is one of im-portant issues...
Competing interactions are often responsible for intriguing phase diagrams in correlated electron sy...
The Mott metal-insulator transition in the two-band Hubbard model in infinite dimensions is studied ...
We investigate metal-insulator transitions in the half-filled Holstein-Hubbard model as a function o...
The density-driven Mott transition is studied by means of dynamical mean-field theory in the Hubbard...
We re-examine the Peierls insulator to Mott insulator transition scenario in the one-dimensional Ho...
We present the phase diagram and dynamical correlation functions for the Holstein–Hubbard model at h...
We analyze the ground-state properties of strongly correlated electrons coupled with phonons by mean...
We analyze the ground-state properties of strongly correlated electrons coupled with phonons by mean...
By using variational wave functions and quantum Monte Carlo techniques, we investigate the interplay...
Using the dynamical mean field theory we show that an electron - phonon interaction can revert the e...
We present a numerical study of the Hubbard-Holstein model in one dimension at half filling, includi...
The ground-state phase diagram of the half filled one-dimensional Holstein-Hubbard model contains a ...
The Hubbard-Holstein model is one of the simplest to incorporate both electron-electron and electron...
In recent years, the study of correlated electron systems has become particularly intense as a resul...
Interplay of strong electron correlation and electron-phonon interaction is one of im-portant issues...
Competing interactions are often responsible for intriguing phase diagrams in correlated electron sy...
The Mott metal-insulator transition in the two-band Hubbard model in infinite dimensions is studied ...
We investigate metal-insulator transitions in the half-filled Holstein-Hubbard model as a function o...
The density-driven Mott transition is studied by means of dynamical mean-field theory in the Hubbard...
We re-examine the Peierls insulator to Mott insulator transition scenario in the one-dimensional Ho...
We present the phase diagram and dynamical correlation functions for the Holstein–Hubbard model at h...
We analyze the ground-state properties of strongly correlated electrons coupled with phonons by mean...
We analyze the ground-state properties of strongly correlated electrons coupled with phonons by mean...
By using variational wave functions and quantum Monte Carlo techniques, we investigate the interplay...
Using the dynamical mean field theory we show that an electron - phonon interaction can revert the e...
We present a numerical study of the Hubbard-Holstein model in one dimension at half filling, includi...
The ground-state phase diagram of the half filled one-dimensional Holstein-Hubbard model contains a ...
The Hubbard-Holstein model is one of the simplest to incorporate both electron-electron and electron...
In recent years, the study of correlated electron systems has become particularly intense as a resul...
Interplay of strong electron correlation and electron-phonon interaction is one of im-portant issues...
Competing interactions are often responsible for intriguing phase diagrams in correlated electron sy...
The Mott metal-insulator transition in the two-band Hubbard model in infinite dimensions is studied ...