Demonstration of Beyond Terabit/s/lambda Nonlinearity-free Transmission over the Hollow-core Fibre

Fuente: arXiv
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Autori principali: Hong, Yang, Almonacil, Sylvain, Mardoyan, Haik, Carrero, Carina Castineiras, Osuna, Sergio, Gomez, Javier R., Knight, David R., Renaudier, Jeremie
Natura: Preprint
Pubblicazione: 2024
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author Hong, Yang
Almonacil, Sylvain
Mardoyan, Haik
Carrero, Carina Castineiras
Osuna, Sergio
Gomez, Javier R.
Knight, David R.
Renaudier, Jeremie
author_facet Hong, Yang
Almonacil, Sylvain
Mardoyan, Haik
Carrero, Carina Castineiras
Osuna, Sergio
Gomez, Javier R.
Knight, David R.
Renaudier, Jeremie
contents We demonstrate nonlinearity-free transmission of Terabit/s/lambda PCS-64QAM signals through an HCF-based optical recirculating loop, which yields ~17.4% higher capacity than SMF-based loop under 23-dBm launch power (~13.5 dBm/channel) after 25 loops. Both lab experiment and field trial show HCF exhibits ~1.6-us/km lower latency than SMF.
format Preprint
id arxiv_https___arxiv_org_abs_2409_00058
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Demonstration of Beyond Terabit/s/lambda Nonlinearity-free Transmission over the Hollow-core Fibre
Hong, Yang
Almonacil, Sylvain
Mardoyan, Haik
Carrero, Carina Castineiras
Osuna, Sergio
Gomez, Javier R.
Knight, David R.
Renaudier, Jeremie
Signal Processing
Systems and Control
Optics
We demonstrate nonlinearity-free transmission of Terabit/s/lambda PCS-64QAM signals through an HCF-based optical recirculating loop, which yields ~17.4% higher capacity than SMF-based loop under 23-dBm launch power (~13.5 dBm/channel) after 25 loops. Both lab experiment and field trial show HCF exhibits ~1.6-us/km lower latency than SMF.
title Demonstration of Beyond Terabit/s/lambda Nonlinearity-free Transmission over the Hollow-core Fibre
topic Signal Processing
Systems and Control
Optics
url https://arxiv.org/abs/2409.00058