Solution of the Anderson impurity model via the functional renormalization group
Strongly Correlated Electrons
2013-05-23 v2
Abstract
We show that the functional renormalization group is a numerically cheap method to obtain the low-energy behavior of the Anderson impurity model describing a localized interacting electron coupled to a bath of conduction electrons. Our approach uses an external magnetic field as flow parameter, partial bosonization of the transverse spin fluctuations, and frequency-independent interaction vertices which are fixed by Ward identities. We calculate the quasi-particle residue and the spin susceptibility in the particle-hole symmetric case and obtain excellent agreement with the Bethe ansatz results for arbitrary strengths of the interaction.
Cite
@article{arxiv.1211.1682,
title = {Solution of the Anderson impurity model via the functional renormalization group},
author = {Simon Streib and Aldo Isidori and Peter Kopietz},
journal= {arXiv preprint arXiv:1211.1682},
year = {2013}
}
Comments
5 pages, 4 figures; version published in PRB Rapid Communications