Generation of broadband optical chaos at mid-infrared wavelength with an interband cascade laser

Author:

Spitz O.1ORCID,Shuai Y. B.2,Zhao S.1ORCID,Didier P.1ORCID,Díaz-Thomas D. A.3,Baranov A. N.3ORCID,Cerutti L.3ORCID,Rontani D.4,Wu J.2ORCID,Grillot F.1ORCID

Affiliation:

1. LTCI Telecom Paris, Institut Polytechnique de Paris 1 , 19 Place Marguerite Perey, Palaiseau 91120, France

2. School of Physical Science and Technology, Southwest University 2 , Chongqing 400715, China

3. Institut d’Electronique et des Systèmes, Université de Montpellier, CNRS UMR 5214 3 , Montpellier 34000, France

4. Chair in Photonics, LMOPS EA 4423 Laboratory, CentraleSupélec & Université de Lorraine 4 , Metz 57070, France

Abstract

Nonlinear dynamics at mid-infrared wavelength is of interest for various applications but has been mainly limited to quantum cascade lasers so far. In this article, we show that interband cascade lasers can generate complex optical chaos with bandwidth in the GHz range and this outperforms the performances of quantum cascade laser chaos. The chaos nature of our signal is confirmed by a thorough time-series analysis. Modeling of the semiconductor laser under short-cavity external optical feedback allows confirming the high bias chaos operation that we observe experimentally. These results pave the way for applications at mid-infrared wavelength, such as private free-space communication.

Funder

Chair in Photonics Metz

European Office of Aerospace Research and Development

Agence Nationale de la Recherche

Direction Générale de l'Armement

Publisher

American Vacuum Society

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