An integrated programmable optical processor is used to mitigate turbulence-induced scintillation effects in Free Space Optical communications. The proposed adaptive transceiver is tested using 5 Gbit/s OOK signals transmitted through an indoor setup that emulates an FSO link of hundreds of meters.

Programmable photonics for atmospheric turbulence compensation in free space optics communications

Andres Martinez;S. Seyedinnavadeh;F. Zanetto;F. Morandi;L. Resteghini;F. Morichetti;A. Melloni
2024-01-01

Abstract

An integrated programmable optical processor is used to mitigate turbulence-induced scintillation effects in Free Space Optical communications. The proposed adaptive transceiver is tested using 5 Gbit/s OOK signals transmitted through an indoor setup that emulates an FSO link of hundreds of meters.
2024
2024 IEEE Photonics Conference (IPC)
Meters;Integrated optics;Fading channels;Free-space optical communication;Atmospheric modeling;Transceivers;Photonics;Optical antennas;Free space optics;programmable photonics;optical processor;silicon photonics
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1279985
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