Comparative study of theoretical methods for nonequilibrium quantum transport
Mesoscale and Nanoscale Physics
2015-05-18 v2 Quantum Physics
Abstract
We present a detailed comparison of three different methods designed to tackle nonequilibrium quantum transport, namely the functional renormalization group (fRG), the time-dependent density matrix renormalization group (tDMRG), and the iterative summation of real-time path integrals (ISPI). For the nonequilibrium single-impurity Anderson model (including a Zeeman term at the impurity site), we demonstrate that the three methods are in quantitative agreement over a wide range of parameters at the particle-hole symmetric point as well as in the mixed-valence regime. We further compare these techniques with two quantum Monte Carlo approaches and the time-dependent numerical renormalization group method.
Cite
@article{arxiv.1001.3773,
title = {Comparative study of theoretical methods for nonequilibrium quantum transport},
author = {J. Eckel and F. Heidrich-Meisner and S. G. Jakobs and M. Thorwart and M. Pletyukhov and R. Egger},
journal= {arXiv preprint arXiv:1001.3773},
year = {2015}
}
Comments
19 pages, 7 figures; published version