Nonequilibrium functional bosonization of quantum wire networks
Mesoscale and Nanoscale Physics
2015-06-05 v1
Abstract
We develop a general approach to nonequilibrium nanostructures formed by one-dimensional channels coupled by tunnel junctions and/or by impurity scattering. The formalism is based on nonequilibrium version of functional bosonization. A central role in this approach is played by the Keldysh action that has a form reminiscent of the theory of full counting statistics. To proceed with evaluation of physical observables, we assume the weak-tunneling regime and develop a real-time instanton method. A detailed exposition of the formalism is supplemented by two important applications: (i) tunneling into a biased Luttinger liquid with an impurity, and (ii) quantum-Hall Fabry-Perot interferometry.
Cite
@article{arxiv.1205.3464,
title = {Nonequilibrium functional bosonization of quantum wire networks},
author = {Stephane Ngo Dinh and Dmitry A. Bagrets and Alexander D. Mirlin},
journal= {arXiv preprint arXiv:1205.3464},
year = {2015}
}
Comments
58 pages, 23 figures