English

Resonance Effects in Correlated Multilayer Heterostructures

Strongly Correlated Electrons 2016-12-30 v2

Abstract

We study the occurrence of negative differential conductance induced by resonance effects in a model for a multilayer heterostructure. In particular, we consider a system consisting of several correlated and non-correlated monoatomic layers, sandwiched between two metallic leads. The geometry confines electrons in wells within the heterostructures, which are connected to each other and to the leads by tunneling processes. The non-equilibrium situation is produced by applying a bias-voltage to the leads. Our results show that for specific values of the parameters resonance tunneling takes place. We investigate in detail its influence on the current-voltage characteristics. Our results are obtained via non-equilibrium real-space dynamical mean-field theory. As an impurity solver we use the so-called auxiliary master equation approach, which addresses the impurity problem within an auxiliary system consisting of a correlated impurity, a small number of uncorrelated bath sites, and two Markovian environments described by a generalized master equation.

Keywords

Cite

@article{arxiv.1607.05115,
  title  = {Resonance Effects in Correlated Multilayer Heterostructures},
  author = {Irakli Titvinidze and Antonius Dorda and Wolfgang von der Linden and Enrico Arrigoni},
  journal= {arXiv preprint arXiv:1607.05115},
  year   = {2016}
}

Comments

8 pages, 4 figures

R2 v1 2026-06-22T14:57:18.364Z