Interband cascade technology for energy-efficient mid-infrared free-space communication

Author:

Didier Pierre1ORCID,Knötig Hedwig2ORCID,Spitz Olivier3ORCID,Cerutti Laurent4ORCID,Lardschneider Anna1,Awwad ElieORCID,Diaz-Thomas Daniel4,Baranov A. N.4ORCID,Weih Robert5,Koeth Johannes5,Schwarz Benedikt2ORCID,Grillot Frédéric6

Affiliation:

1. Centre d’intégration NanoInnov

2. Institute for Solid State Electronics

3. University of Central Florida

4. Université de Montpellier

5. Nanoplus Nanosystems and Technologies GmbH

6. University of New Mexico

Abstract

Space-to-ground high-speed transmission is of utmost importance for the development of a worldwide broadband network. Mid-infrared wavelengths offer numerous advantages for building such a system, spanning from low atmospheric attenuation to eye-safe operation and resistance to inclement weather conditions. We demonstrate a full interband cascade system for high-speed transmission around a wavelength of 4.18 µm. The low-power consumption of both the laser and the detector in combination with a large modulation bandwidth and sufficient output power makes this technology ideal for a free-space optical communication application. Our proof-of-concept experiment employs a radio-frequency optimized Fabry–Perot interband cascade laser and an interband cascade infrared photodetector based on a type-II InAs/GaSb superlattice. The bandwidth of the system is evaluated to be around 1.5 GHz. It allows us to achieve data rates of 12 Gbit/s with an on–off keying scheme and 14 Gbit/s with a 4-level pulse amplitude modulation scheme. The quality of the transmission is enhanced by conventional pre- and post-processing in order to be compatible with standard error-code correction.

Funder

Agence Nationale de la Recherche

Direction Générale de l’Armement

European Office of Aerospace Research and Development

European Research Council

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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