High bitrate data transmission in the 8-14 µm atmospheric window using an external Stark-effect modulator with digital equalization

Author:

Dely HamzaORCID,Joharifar Mahdieh1,Pang Xiaodan12ORCID,Gacemi Djamal,Salgals Toms3ORCID,Schatz Richard1,Sun Yan-Ting1ORCID,Bonazzi Thomas,Rodriguez Etienne,Todorov YankoORCID,Vasanelli Angela,Udalcovs Aleksejs2ORCID,Spolitis Sandis3ORCID,Bobrovs Vjaceslavs3,Ozolins Oskars123ORCID,Popov Sergei1,Sirtori CarloORCID

Affiliation:

1. KTH Royal Institute of Technology

2. RISE Research Institutes of Sweden

3. Riga Technical University

Abstract

High bitrate mid-infrared links using simple (NRZ) and multi-level (PAM-4) data coding schemes have been realized in the 8 µm to 14 µm atmospheric transparency window. The free space optics system is composed of unipolar quantum optoelectronic devices, namely a continuous wave quantum cascade laser, an external Stark-effect modulator and a quantum cascade detector, all operating at room-temperature. Pre- and post-processing are implemented to get enhanced bitrates, especially for PAM-4 where inter-symbol interference and noise are particularly detrimental to symbol demodulation. By exploiting these equalization procedures, our system, with a full frequency cutoff of 2 GHz, has reached transmission bitrates of 12 Gbit/s NRZ and 11 Gbit/s PAM-4 fulfilling the 6.25 % overhead hard-decision forward error correction threshold, limited only by the low signal-to-noise ratio of our detector.

Funder

ENS-Thales Chair

Centre National de la Recherche Scientifique

Agence Nationale de la Recherche

H2020 Future and Emerging Technologies

Région Ile-de-France

Vetenskapsrådet

European Cooperation in Science and Technology

European Regional Development Fund

Rīgas Tehniskā Universitāte

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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