Peta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber

Space division multiplexing solutions are one way to increase future fiber information capacity. Here, the authors show peta-bit/s transmission in a standard-diameter, multimode fiber enabled by combining several practical multiplexing technologies.

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Autores principales: Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luís, Tobias A. Eriksson, Nicolas K. Fontaine, Mikael Mazur, Haoshuo Chen, Roland Ryf, David T. Neilson, Pierre Sillard, Frank Achten, Yoshinari Awaji, Hideaki Furukawa
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/6decd8a25f3c4df799918edf22a22aff
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spelling oai:doaj.org-article:6decd8a25f3c4df799918edf22a22aff2021-12-02T16:14:58ZPeta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber10.1038/s41467-021-24409-w2041-1723https://doaj.org/article/6decd8a25f3c4df799918edf22a22aff2021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24409-whttps://doaj.org/toc/2041-1723Space division multiplexing solutions are one way to increase future fiber information capacity. Here, the authors show peta-bit/s transmission in a standard-diameter, multimode fiber enabled by combining several practical multiplexing technologies.Georg RademacherBenjamin J. PuttnamRuben S. LuísTobias A. ErikssonNicolas K. FontaineMikael MazurHaoshuo ChenRoland RyfDavid T. NeilsonPierre SillardFrank AchtenYoshinari AwajiHideaki FurukawaNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Georg Rademacher
Benjamin J. Puttnam
Ruben S. Luís
Tobias A. Eriksson
Nicolas K. Fontaine
Mikael Mazur
Haoshuo Chen
Roland Ryf
David T. Neilson
Pierre Sillard
Frank Achten
Yoshinari Awaji
Hideaki Furukawa
Peta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber
description Space division multiplexing solutions are one way to increase future fiber information capacity. Here, the authors show peta-bit/s transmission in a standard-diameter, multimode fiber enabled by combining several practical multiplexing technologies.
format article
author Georg Rademacher
Benjamin J. Puttnam
Ruben S. Luís
Tobias A. Eriksson
Nicolas K. Fontaine
Mikael Mazur
Haoshuo Chen
Roland Ryf
David T. Neilson
Pierre Sillard
Frank Achten
Yoshinari Awaji
Hideaki Furukawa
author_facet Georg Rademacher
Benjamin J. Puttnam
Ruben S. Luís
Tobias A. Eriksson
Nicolas K. Fontaine
Mikael Mazur
Haoshuo Chen
Roland Ryf
David T. Neilson
Pierre Sillard
Frank Achten
Yoshinari Awaji
Hideaki Furukawa
author_sort Georg Rademacher
title Peta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber
title_short Peta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber
title_full Peta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber
title_fullStr Peta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber
title_full_unstemmed Peta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber
title_sort peta-bit-per-second optical communications system using a standard cladding diameter 15-mode fiber
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/6decd8a25f3c4df799918edf22a22aff
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