Decoherence of interacting electrons in disordered conductors: on the relation between influence functional and diagrammatic approaches
Abstract
We establish a connection between the influence functional approach of Golubev and Zaikin (GZ) and Keldysh diagrammatic perturbation theory for calculating the decoherence time of interacting electrons in disordered metals; we show how the standard diagrams for the Cooperon self energy can be recovered from GZ's influence functional . This allows us to shed light on GZ's claim that is irrelevant for decoherence: generates as many important self energy diagrams as ; GZ's neglect of is permissible only at high temperatures ().
Keywords
Cite
@article{arxiv.cond-mat/0210644,
title = {Decoherence of interacting electrons in disordered conductors: on the relation between influence functional and diagrammatic approaches},
author = {Jan von Delft},
journal= {arXiv preprint arXiv:cond-mat/0210644},
year = {2015}
}
Comments
6 pages LaTeX, 2 figures, for conference proceedings: "Quantum Transport and Quantum Coherence" -- Localisation 2002 Sophia University, Tokyo, August 16-19, 2002, to be published in a supplement of the Journal of Physical Society of Japan