Strongly correlated electrons: Dynamical vertex renormalization
Abstract
Single-band Hubbard model at criticality of the metal-insulator transition is studied using approximations derived from parquet theory. It is argued that only the electron-hole and interaction two-particle channels in the parquet algebra are relevant. A scheme is proposed how to reduce the parquet equations to a manageable form the complexity of which is comparable with single-channel approximations such as the renormalized RPA. The newly derived approximation, however, contains dynamical vertex corrections, remains self-consistent at the two-particle level and allows only for integrable singularities. A qualitatively new approach for studying two-particle singularities at zero temperature is obtained.
Cite
@article{arxiv.cond-mat/9810175,
title = {Strongly correlated electrons: Dynamical vertex renormalization},
author = {Vaclav Janis},
journal= {arXiv preprint arXiv:cond-mat/9810175},
year = {2007}
}
Comments
13 pages, 4 EPS figures; International Workshop on Electron Correlations and Materials Properties, Crete, Greece, June 28 - July 3, 1998