Short-reach transmission systems traditionally utilize intensity modulation (IM) at the transmitter and direct detection (DD) at the receiver due to their cost-effectiveness, small …
S Masaad, E Gooskens, S Sackesyn, J Dambre… - …, 2023 - degruyter.com
Photonic reservoirs are machine learning based systems that boast energy efficiency and speediness. Thus they can be deployed as optical processors in fiber communication …
Z Vujicic, MC Santos, R Méndez, B Klaiqi… - IEEE …, 2024 - ieeexplore.ieee.org
Towards supporting a myriad of new services and applications under highly heterogeneous operating conditions, while dynamically adapting to capacity and quality-of-service (QoS) …
New 5 G and beyond services demand innovative solutions in optical transport to increase efficiency and flexibility and reduce capital (CAPEX) and operational (OPEX) expenditures …
S Masaad, P Bienstman - Optics Express, 2024 - opg.optica.org
We numerically demonstrate the use of an opto-electronic network comprising a photonic reservoir and an electronic feedforward equalizer (FFE) to linearize a Kramers-Kronig (KK) …
Y Nasrollahzadeh, S Kumar, J Bi… - IEEE …, 2025 - ieeexplore.ieee.org
The self-coherent scheme is attractive for free space optical communications (FSO) due to the higher oscillator-signal mixing efficiency compared to a coherent scheme. In this paper …
S Jalilpiran, J Lefebvre, N Grégoire… - Journal of Lightwave …, 2024 - ieeexplore.ieee.org
Fiber amplifiers operating in the L-band can benefit from further extending their gain bandwidth and improving overall operation costs. This work addresses both aspects through …
As the demand for high-speed, low-latency communication continues to grow, free-space optical (FSO) communication has gained prominence as a promising solution for supporting …
P Qin, C Bai, Q Qi, H Xu, F Yang, P Li, Y Zhang - IEEE Access, 2023 - ieeexplore.ieee.org
A thorough analysis of the system model for complex-valued optical double-sideband (DSB) transmission with carrier-assisted differential detection (CADD) receiver under the influence …