activity
19952005
most citedElectron spectra close to a metal-to-insulator transition

60 citations · 202 across the 7 of their papers we have counts for

collaborators

9 papers

cond-mat.str-el200560 cited

Electron spectra close to a metal-to-insulator transition

Michal Karski, Carsten Raas, Götz S. Uhrig

A high-resolution investigation of the electron spectra close to the metal-to-insulator transition in dynamic mean-field theory is presented. An all-numerical, consistent confirmat…

cond-mat.supr-con2005

Magnetic Excitations in Bilayer High-Temperature Superconductors with Stripe Correlations

G. S. Uhrig, K. P. Schmidt, M. Grüninger

The universal behaviour of the magnetic excitations in high-temperature superconductors is described in a model with static stripes retaining only the localized spin degrees of fre…

cond-mat.str-el200440 cited

Spectral Densities from Dynamic Density-Matrix Renormalization

Carsten Raas, Götz S. Uhrig

Dynamic density-matrix renormalization provides valuable numerical information on dynamic correlations by computing convolutions of the corresponding spectral densities. Here we di…

cond-mat.str-el20042 cited

Thermodynamics of a Spin-1/2 Chain Coupled to Einstein Phonons

Alexander Bühler, Götz S. Uhrig, Jaan Oitmaa

A high order series expansion is employed to study the thermodynamical properties of a S=1/2 chain coupled to dispersionless phonons. The results are obtained without truncating th…

cond-mat.str-el200453 cited

Systematic Mapping of the Hubbard Model to the Generalized t-J Model

Alexander Reischl, Erwin Müller-Hartmann, Götz S. Uhrig

The generalized t-J model conserving the number of double occupancies is constructed from the Hubbard model at and in the vicinity of half-filling at strong coupling. The construct…

cond-mat.str-el200347 cited

High Energy Dynamics of the Single Impurity Anderson Model

Carsten Raas, Götz S. Uhrig, Frithjof B. Anders

The quantitative control of the dynamic correlations of single impurity Anderson models is essential in several very active fields. We analyze the one-particle Green function with…