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JOURNALS // Zhurnal Matematicheskoi Fiziki, Analiza, Geometrii [Journal of Mathematical Physics, Analysis, Geometry] // Archive

Zh. Mat. Fiz. Anal. Geom., 2014 Volume 10, Number 3, Pages 350–385 (Mi jmag599)

This article is cited in 5 papers

A New Model of Quantum Dot Light Emitting-Absorbing Devices

H. Neidhardta, L. Wilhelma, V. A. Zagrebnovb

a WIAS Berlin, Mohrenstr. 39, 10117 Berlin, Germany
b Institut de Mathématiques de Marseille - UMR 7373, CMI - Technopôle Château-Gombert, 39, rue F. Joliot Curie, 13453 Marseille Cedex 13, France

Abstract: Motivated by the Jaynes–Cummings (JC) model, we consider here a quantum dot coupled simultaneously to a reservoir of photons and two electric leads (free-fermion reservoirs). This new Jaynes–Cummings-leads (JCL)-type model makes it possible that the fermion current through the dot creates a photon flux, which describes a light-emitting device. The same model also describes a transformation of the photon flux into the current of fermions, i.e., a quantum dot light-absorbing device. The key tool to obtain these results is the abstract Landauer–Büttiker formula.

Key words and phrases: Landauer–Büttiker formula, Jaynes–Cummings model, coupling to leads, light emission.

MSC: 47A40, 47A55, 81Q37, 81V80

Received: 12.12.2013
Revised: 04.04.2014

Language: English

DOI: 10.15407/mag10.03.350



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