New methods for modal decomposition in multi-mode fibres

Fuente: arXiv
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Autores principales: Blin, S., Nguyen, T., Nguyen, D., Rochard, P., Provino, L., Monteville, A., Robin, T., Mugnier, A., Cadier, B., Pureur, D., Thual, Monique, Chartier, T.
Formato: Preprint
Publicado: 2024
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author Blin, S.
Nguyen, T.
Nguyen, D.
Rochard, P.
Provino, L.
Monteville, A.
Robin, T.
Mugnier, A.
Cadier, B.
Pureur, D.
Thual, Monique
Chartier, T.
author_facet Blin, S.
Nguyen, T.
Nguyen, D.
Rochard, P.
Provino, L.
Monteville, A.
Robin, T.
Mugnier, A.
Cadier, B.
Pureur, D.
Thual, Monique
Chartier, T.
contents We propose and demonstrate two methods for modal decomposition in multi-mode fibres. Linearly polarized modes propagating in a slightly multi-mode fibre are easily retrieved from intensity measurements at the fibre output surface. The first method is an improvement of the so-called spectrally and spatially imaging technique, which is limited to largemode-area optical fibers. The second method is a new, simpler and faster solution for the characterization of any kind of optical fibre, thus attractive in comparison to previously reported methods, which are cumbersome, time-consuming and/or limited to large-more-area fibres. Different kinds of multi-mode optical fibres are characterized. A large-modearea photonic-bandgap fibre, a photonic-crystal small-core non-linear fibre, and a standard index-stepped multi-mode fibre are characterized successfully.
format Preprint
id arxiv_https___arxiv_org_abs_2401_04438
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle New methods for modal decomposition in multi-mode fibres
Blin, S.
Nguyen, T.
Nguyen, D.
Rochard, P.
Provino, L.
Monteville, A.
Robin, T.
Mugnier, A.
Cadier, B.
Pureur, D.
Thual, Monique
Chartier, T.
Optics
We propose and demonstrate two methods for modal decomposition in multi-mode fibres. Linearly polarized modes propagating in a slightly multi-mode fibre are easily retrieved from intensity measurements at the fibre output surface. The first method is an improvement of the so-called spectrally and spatially imaging technique, which is limited to largemode-area optical fibers. The second method is a new, simpler and faster solution for the characterization of any kind of optical fibre, thus attractive in comparison to previously reported methods, which are cumbersome, time-consuming and/or limited to large-more-area fibres. Different kinds of multi-mode optical fibres are characterized. A large-modearea photonic-bandgap fibre, a photonic-crystal small-core non-linear fibre, and a standard index-stepped multi-mode fibre are characterized successfully.
title New methods for modal decomposition in multi-mode fibres
topic Optics
url https://arxiv.org/abs/2401.04438