We analyze the effects of the on-site Coulomb repulsion U on a band insulator using dynamical mean field theory (DMFT). We find the surprising result that the gap is suppressed to zero at a critical U_c1 and remains zero within a metallic phase. At a larger U_c2 there is a second transition from the metal to a Mott insulator, in which the gap increases with increasing U. These results are qualitatively different from Hartree-Fock theory which gives a monotonically decreasing but nonzero insulating gap for all finite U
In the last one and a half decade, the Dynamical Mean Field Theory (DMFT) allowed to get insight int...
We analyze an interplay between Coulomb blockade and quantum fluctuations in a coherent conductor (w...
We study the metal-insulator transition due to correlations between electrons using a Hubbard model....
We analyze the effects of the on-site Coulomb repulsion U on a band insulator using dynamical mean f...
The effect of on-site electron-electron repulsion U in a band insulator is explored for a bilayer Hu...
Mott insulators are "unsuccessful metals" in which Coulomb repulsion prevents charge conduction desp...
A single Anderson impurity model recently predicted, through its unstable fixed point, the phase dia...
The electronic properties of strongly correlated systems with binary type of disorder are investigat...
While Mott insulators induced by Coulomb interactions are a well-recognized class of metal-insulator...
We study a spinless two-band model at half-filling in the limit of infinite dimensions. The ground s...
We investigate the metal-insulator Mott transition in a generalized version of the periodic Anderson...
We present a dynamical mean-field theory (DMFT) study of strongly correlated heterostructures. In co...
We present a theory for band-tuned metal-insulator transitions based on the Kubo formalism. Such a t...
More than half a century after first being proposed by Sir Nevill Mott, the deceptively simple quest...
Electron tunneling measurements of the density of states (DOS) in ultrathin Be films reveal that a c...
In the last one and a half decade, the Dynamical Mean Field Theory (DMFT) allowed to get insight int...
We analyze an interplay between Coulomb blockade and quantum fluctuations in a coherent conductor (w...
We study the metal-insulator transition due to correlations between electrons using a Hubbard model....
We analyze the effects of the on-site Coulomb repulsion U on a band insulator using dynamical mean f...
The effect of on-site electron-electron repulsion U in a band insulator is explored for a bilayer Hu...
Mott insulators are "unsuccessful metals" in which Coulomb repulsion prevents charge conduction desp...
A single Anderson impurity model recently predicted, through its unstable fixed point, the phase dia...
The electronic properties of strongly correlated systems with binary type of disorder are investigat...
While Mott insulators induced by Coulomb interactions are a well-recognized class of metal-insulator...
We study a spinless two-band model at half-filling in the limit of infinite dimensions. The ground s...
We investigate the metal-insulator Mott transition in a generalized version of the periodic Anderson...
We present a dynamical mean-field theory (DMFT) study of strongly correlated heterostructures. In co...
We present a theory for band-tuned metal-insulator transitions based on the Kubo formalism. Such a t...
More than half a century after first being proposed by Sir Nevill Mott, the deceptively simple quest...
Electron tunneling measurements of the density of states (DOS) in ultrathin Be films reveal that a c...
In the last one and a half decade, the Dynamical Mean Field Theory (DMFT) allowed to get insight int...
We analyze an interplay between Coulomb blockade and quantum fluctuations in a coherent conductor (w...
We study the metal-insulator transition due to correlations between electrons using a Hubbard model....