Mode division multiplexing of spiral-phased donut modes in multimode fiber

Mode division multiplexing (MDM) is a promising technology for alleviating network traffic congestion in order to future proof current local area network infrastructure. In view of the capacity limits of multimode fiber in the advent of tremendous data growth, various dimensions for multiplexing and...

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Main Authors: Amphawan, Angela, al-Nadesh, Yousef Ali Fazea, Ibrahim, Huda
Format: Conference or Workshop Item
Published: 2015
Subjects:
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author Amphawan, Angela
al-Nadesh, Yousef Ali Fazea
Ibrahim, Huda
author_facet Amphawan, Angela
al-Nadesh, Yousef Ali Fazea
Ibrahim, Huda
author_sort Amphawan, Angela
collection UUM
description Mode division multiplexing (MDM) is a promising technology for alleviating network traffic congestion in order to future proof current local area network infrastructure. In view of the capacity limits of multimode fiber in the advent of tremendous data growth, various dimensions for multiplexing and modulating data have been commercially deployed in the intensity, phase, wavelength and time domains. The eigenmode dimension, however, has been relatively untapped. This paper models the MDM of spiral-phased donut modes of different diameters in MMF for increasing the data capacity. A data rate of 40Gbit/s up for a distance of 1500 meters is achieved. Analyses of the power coupling coefficients and modal delays at the photodetectors are analyzed for different mode vortex orders.
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spelling uum-161042016-04-27T01:21:12Z https://repo.uum.edu.my/id/eprint/16104/ Mode division multiplexing of spiral-phased donut modes in multimode fiber Amphawan, Angela al-Nadesh, Yousef Ali Fazea Ibrahim, Huda T Technology (General) Mode division multiplexing (MDM) is a promising technology for alleviating network traffic congestion in order to future proof current local area network infrastructure. In view of the capacity limits of multimode fiber in the advent of tremendous data growth, various dimensions for multiplexing and modulating data have been commercially deployed in the intensity, phase, wavelength and time domains. The eigenmode dimension, however, has been relatively untapped. This paper models the MDM of spiral-phased donut modes of different diameters in MMF for increasing the data capacity. A data rate of 40Gbit/s up for a distance of 1500 meters is achieved. Analyses of the power coupling coefficients and modal delays at the photodetectors are analyzed for different mode vortex orders. 2015-07-17 Conference or Workshop Item NonPeerReviewed Amphawan, Angela and al-Nadesh, Yousef Ali Fazea and Ibrahim, Huda (2015) Mode division multiplexing of spiral-phased donut modes in multimode fiber. In: International Conference on Optical and Photonic Engineering (icOPEN 2015), April 14, 2015, Singapore. (Unpublished) http://doi.org/10.1117/12.2187250 doi:10.1117/12.2187250 doi:10.1117/12.2187250
spellingShingle T Technology (General)
Amphawan, Angela
al-Nadesh, Yousef Ali Fazea
Ibrahim, Huda
Mode division multiplexing of spiral-phased donut modes in multimode fiber
title Mode division multiplexing of spiral-phased donut modes in multimode fiber
title_full Mode division multiplexing of spiral-phased donut modes in multimode fiber
title_fullStr Mode division multiplexing of spiral-phased donut modes in multimode fiber
title_full_unstemmed Mode division multiplexing of spiral-phased donut modes in multimode fiber
title_short Mode division multiplexing of spiral-phased donut modes in multimode fiber
title_sort mode division multiplexing of spiral phased donut modes in multimode fiber
topic T Technology (General)
work_keys_str_mv AT amphawanangela modedivisionmultiplexingofspiralphaseddonutmodesinmultimodefiber
AT alnadeshyousefalifazea modedivisionmultiplexingofspiralphaseddonutmodesinmultimodefiber
AT ibrahimhuda modedivisionmultiplexingofspiralphaseddonutmodesinmultimodefiber