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Photonic reservoir computing for nonlinear equalization of 64-QAM signals with a Kramers–Kronig receiver

Masaad Sarah et al · Wiley · 2022

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Photonic reservoirs are machine learning based systems that boast energy efficiency and speediness. Thus they can be deployed as optical processors in fiber communication systems to aid or replace digital signal equalization. In this paper, we simulate the use of a passive photonic reservoir to target nonlinearity-induced errors originating from self-phase modulation in the fiber and from the nonlinear response of the modulator. A 64-level quadrature-amplitude modulated signal is directly detected using the recently proposed Kramers–Kronig (KK) receiver. We train the readout weights by backpropagating through the receiver pipeline, thereby providing extra nonlinearity. Statistically computed bit error rates for fiber lengths of up to 100 km fall below 1 × 10−3 bit error rate, outperforming an optical feed-forward equalizer as a linear benchmark. This can find applications in inter-datacenter communications that benefit from the hardware simplicity of a KK receiver and the low power and low latency processing of a photonic reservoir.

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APA 7

al, M. S. E. (2022). Photonic reservoir computing for nonlinear equalization of 64-QAM signals with a Kramers–Kronig receiver. https://doi.org/10.1515/nanoph-2022-0426

MLA

al, Masaad Sarah et. "Photonic reservoir computing for nonlinear equalization of 64-QAM signals with a Kramers–Kronig receiver." 2022. https://doi.org/10.1515/nanoph-2022-0426.

Chicago

al, Masaad Sarah et. 2022. "Photonic reservoir computing for nonlinear equalization of 64-QAM signals with a Kramers–Kronig receiver.". https://doi.org/10.1515/nanoph-2022-0426.

Harvard

al, M. S. E. 2022, Photonic reservoir computing for nonlinear equalization of 64-QAM signals with a Kramers–Kronig receiver, Wiley, available at: https://doi.org/10.1515/nanoph-2022-0426 [Accessed 5 Aug. 2026].

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Title
Photonic reservoir computing for nonlinear equalization of 64-QAM signals with a Kramers–Kronig receiver
Author / contributors
Masaad Sarah et al
Publisher
Wiley
Publication year
2022
ISSN
2192-8614
ISSN
2192-8614
Language
English

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