A Highly Flexible Polarization Demultiplexing Scheme for Short-Reach Transmission

We propose and experimentally demonstrate an effective and highly flexible polarization demultiplexing scheme based on a Stokes analyzer, which could be also applied to the nonorthogonal polarization division multiplexing (NPDM) schemes. Compared with the conventional direct detection, the proposed...

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Main Authors: Zhiyu Chen, Lianshan Yan, Wei Pan, Bin Luo, Anlin Yi, Yan Pan, Lin Jiang, Jia Ye, X. Steve Yao, Guifang Li
Format: Article
Language:English
Published: IEEE 2015-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7317503/
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spelling doaj-ddaeb264cd5b44bcb823bff707406a3b2021-03-29T17:28:17ZengIEEEIEEE Photonics Journal1943-06552015-01-01761810.1109/JPHOT.2015.24975847317503A Highly Flexible Polarization Demultiplexing Scheme for Short-Reach TransmissionZhiyu Chen0Lianshan Yan1Wei Pan2Bin Luo3Anlin Yi4Yan Pan5Lin Jiang6Jia Ye7X. Steve Yao8Guifang Li9Center for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, ChinaCenter for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, ChinaCenter for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, ChinaCenter for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, ChinaCenter for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, ChinaCenter for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, ChinaCenter for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, ChinaCenter for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, ChinaGen. Photonics Corp., Chino, CA, USACenter for Res. & Educ. in Opt. & Lasers, Univ. of Central Florida, Orlando, FL, USAWe propose and experimentally demonstrate an effective and highly flexible polarization demultiplexing scheme based on a Stokes analyzer, which could be also applied to the nonorthogonal polarization division multiplexing (NPDM) schemes. Compared with the conventional direct detection, the proposed method has better tolerance to the polarization-dependent loss. Furthermore, such an approach can significantly enhance system flexibility without increasing cost and complexity since the transmitted signals are not required to maintain strict orthogonality, and no additional polarization-tracking feedback circuit is needed. Experimental results show that any polarization multiplexing degree that is larger than 23° can be adaptively demultiplexed after 10-km transmission using optical orthogonality monitoring and digital-signal-processing (DSP) algorithms.https://ieeexplore.ieee.org/document/7317503/Non-orthogonalityMultiplexingPolarizationTransmission
collection DOAJ
language English
format Article
sources DOAJ
author Zhiyu Chen
Lianshan Yan
Wei Pan
Bin Luo
Anlin Yi
Yan Pan
Lin Jiang
Jia Ye
X. Steve Yao
Guifang Li
spellingShingle Zhiyu Chen
Lianshan Yan
Wei Pan
Bin Luo
Anlin Yi
Yan Pan
Lin Jiang
Jia Ye
X. Steve Yao
Guifang Li
A Highly Flexible Polarization Demultiplexing Scheme for Short-Reach Transmission
IEEE Photonics Journal
Non-orthogonality
Multiplexing
Polarization
Transmission
author_facet Zhiyu Chen
Lianshan Yan
Wei Pan
Bin Luo
Anlin Yi
Yan Pan
Lin Jiang
Jia Ye
X. Steve Yao
Guifang Li
author_sort Zhiyu Chen
title A Highly Flexible Polarization Demultiplexing Scheme for Short-Reach Transmission
title_short A Highly Flexible Polarization Demultiplexing Scheme for Short-Reach Transmission
title_full A Highly Flexible Polarization Demultiplexing Scheme for Short-Reach Transmission
title_fullStr A Highly Flexible Polarization Demultiplexing Scheme for Short-Reach Transmission
title_full_unstemmed A Highly Flexible Polarization Demultiplexing Scheme for Short-Reach Transmission
title_sort highly flexible polarization demultiplexing scheme for short-reach transmission
publisher IEEE
series IEEE Photonics Journal
issn 1943-0655
publishDate 2015-01-01
description We propose and experimentally demonstrate an effective and highly flexible polarization demultiplexing scheme based on a Stokes analyzer, which could be also applied to the nonorthogonal polarization division multiplexing (NPDM) schemes. Compared with the conventional direct detection, the proposed method has better tolerance to the polarization-dependent loss. Furthermore, such an approach can significantly enhance system flexibility without increasing cost and complexity since the transmitted signals are not required to maintain strict orthogonality, and no additional polarization-tracking feedback circuit is needed. Experimental results show that any polarization multiplexing degree that is larger than 23° can be adaptively demultiplexed after 10-km transmission using optical orthogonality monitoring and digital-signal-processing (DSP) algorithms.
topic Non-orthogonality
Multiplexing
Polarization
Transmission
url https://ieeexplore.ieee.org/document/7317503/
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