Nonlinearity Mitigation for Multi-channel 64-QAM Signals in a Deployed Fiber Link through Optical Phase Conjugation
Nonlinearity Mitigation for Multi-channel 64-QAM Signals in a Deployed Fiber Link through Optical Phase Conjugation
We report nonlinearity mitigation of two 64-QAM signals, tested in a WDM environment, through mid-link optical phase conjugation. Efficient reuse of signal bandwidth and a Q-factor improvement of more than 1.7 dB is demonstrated in a 400 km installed fiber link.
optical phase conjugation, fiber optics communications
University of Southampton
YOSHIMA, SATOSHI
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Liu, Zhixin
01f60f1d-54b7-4c19-b3f3-9550f9d77733
Sun, Yujia
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Bottrill, Kyle
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Parmigiani, Francesca
6a386833-5186-4448-875e-d691161aba62
Petropoulos, Periklis
522b02cc-9f3f-468e-bca5-e9f58cc9cad7
Richardson, David
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
YOSHIMA, SATOSHI
b6adc014-fb0a-4d67-9dbc-45e249631ad6
Liu, Zhixin
01f60f1d-54b7-4c19-b3f3-9550f9d77733
Sun, Yujia
b99327a8-2122-4f91-b978-f4b89b82b493
Bottrill, Kyle
8c2e6c2d-9f14-424e-b779-43c23e2f49ac
Parmigiani, Francesca
6a386833-5186-4448-875e-d691161aba62
Petropoulos, Periklis
522b02cc-9f3f-468e-bca5-e9f58cc9cad7
Richardson, David
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
YOSHIMA, SATOSHI, Liu, Zhixin, Sun, Yujia, Bottrill, Kyle, Parmigiani, Francesca, Petropoulos, Periklis and Richardson, David
(2016)
Nonlinearity Mitigation for Multi-channel 64-QAM Signals in a Deployed Fiber Link through Optical Phase Conjugation.
University of Southampton
doi:10.5258/SOTON/382888
[Dataset]
Abstract
We report nonlinearity mitigation of two 64-QAM signals, tested in a WDM environment, through mid-link optical phase conjugation. Efficient reuse of signal bandwidth and a Q-factor improvement of more than 1.7 dB is demonstrated in a 400 km installed fiber link.
Other
Brief description of the attached files - Readme
- Dataset
More information
Published date: 2016
Keywords:
optical phase conjugation, fiber optics communications
Organisations:
Optoelectronics Research Centre, ORC Research
Projects:
Transforming the Internet Infrastructure: The Photonic HyperHighway
Funded by: UNSPECIFIED (EP/I01196X/1)
1 November 2010 to 31 October 2016
Transforming the Internet Infrastructure: The Photonic HyperHighway
Funded by: UNSPECIFIED (EP/I01196X)
November 2010 to October 2016
Identifiers
Local EPrints ID: 382888
URI: http://eprints.soton.ac.uk/id/eprint/382888
PURE UUID: 1577a1f2-22cb-4ca0-b5c1-5f758abdc5bb
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Date deposited: 26 Jan 2016 16:32
Last modified: 05 Nov 2023 02:49
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