activity
19942008
most citedNodal/Antinodal Dichotomy and the Two Gaps of a Superconducting Doped Mott Insulator

80 citations · 393 across the 20 of their papers we have counts for

collaborators
Showing 2008Show all

12 papers · 1 filter

cond-mat.str-el200890 cited

Coulomb Correlations and the Wigner-Mott Transition

A. Camjayi, K. Haule, V. Dobrosavljevic +1

Strong correlation effects, such as a dramatic increase in the effective mass of the carriers of electricity, recently observed in the low density electron gas have provided specta…

cond-mat.mtrl-sci200833 cited

X-ray absorption branching ratio in actinides: LDA+DMFT approach

J. H. Shim, K. Haule, G. Kotliar

To investigate the x-ray absorption (XAS) branching ratio from the core 4d to valence 5f states, we set up a theoretical framework by using a combination of density functional theo…

cond-mat.str-el20081 cited

Parent Phases of Doped Mott Insulators: A Cluster DMFT Study

Jean-Christophe Domenge, Gabriel Kotliar

We investigate the insulating phases of a frustrated Hubbard model in its strong coupling regime at half-filling. We pay special attention to all the symmetry breaking instabilitie…

cond-mat.str-el200861 cited

Valence-Bond Dynamical Mean-Field Theory of Doped Mott Insulators with Nodal/Antinodal Differentiation

M. Ferrero, P. S. Cornaglia, L. De Leo +3

We introduce a valence-bond dynamical mean-field theory of doped Mott insulators. It is based on a minimal cluster of two orbitals, each associated with a different region of momen…

cond-mat.str-el20081 cited

Screening of magnetic moments in PuAm alloy : LDA+DMFT study

J. H. Shim, K. Haule, S. Savrasov +1

The puzzling absence of Pu magnetic moments in a PuAm environment is explored using the self-consistent Dynamical Mean Field Theory (DMFT) calculations in combination with the Loca…

cond-mat.str-el2008

Electronic coherence in -Pu: A DMFT study

C. A. Marianetti, K. Haule, G. Kotliar +1

A combination of Density Functional Theory and the Dynamical Mean Field theory (DMFT) is used to calculate the magnetic susceptibility, heat capacity, and the temperature dependenc…