Demonstration and Characterization of High-Throughput 200.5 Tbit/s S+C+L Transmission over 2x100 PSCF Spans

Author:

Escobar-Landero Salma1ORCID,Zhao Xiaohui1,Gac Dylan Le1,Lorences-Riesgo Abel1ORCID,Viret-Denaix Tugdual1,Guo Qiang2,Gan Lin2ORCID,Li Shujie2,Cao Shiyi2,Xiao Xinhua2,Demirtzioglou Iosif1ORCID,Dahdah Nayla El1,Gallet Antonin1,Yu Shuqi1,Hafermann Hartmut1ORCID,Godard Loig1,Brenot Romain1,Frignac Yann1,Charlet Gabriel1ORCID

Affiliation:

1. Optical Communication Technology Lab, Paris Research Center, Huawei Technologies, Boulogne-Billancourt, France

2. B&P Lab, Huawei Technology Company Ltd., Shenzhen, China

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Subject

Atomic and Molecular Physics, and Optics

Reference25 articles.

1. Optical Fibre Capacity Optimisation via Continuous Bandwidth Amplification and Geometric Shaping

2. 150.3-Tb/s ultra-wideband (S, C, and L bands) single-mode fibre transmission over 40-km using >519 Gb/s/A PDM128QAM signals;hamaoka;Proc Eur Conf Opt Commun,2018

3. 1 Pb/s transmission in a 125 µm diameter 4-core MCF;puttnam;Proc Conf Lasers Electro-Opt,2022

4. S-, C- and L-band transmission over a 157 nm bandwidth using doped fiber and distributed Raman amplification

5. Bismuth doped fibre amplifier operating in E- and S- optical bands

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