Non-equilibrium frequency-dependent noise through a quantum dot: A real time functional renormalization group approach
Mesoscale and Nanoscale Physics
2011-06-13 v1
Abstract
We construct a real time current-conserving functional renormalization group (RG) scheme on the Keldysh contour to study frequency-dependent transport and noise through a quantum dot in the local moment regime. We find that the current vertex develops a non-trivial non-local structure in time, governed by a new set of RG equations. Solving these RG equations, we compute the complete frequency and temperature-dependence of the noise spectrum. For voltages large compared to the Kondo temperature, , two sharp anti-resonances are found in the noise spectrum at frequencies , and correspondingly, two peaks in the ac conductance through the dot.
Cite
@article{arxiv.1008.0150,
title = {Non-equilibrium frequency-dependent noise through a quantum dot: A real time functional renormalization group approach},
author = {C. P. Moca and P. Simon and C. H. Chung and G. Zarand},
journal= {arXiv preprint arXiv:1008.0150},
year = {2011}
}
Comments
4 pages, 4 figures