Open transmission channels in multimode fiber cavities with random mode mixing

Fuente: arXiv
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Main Authors: Pelc, Guy, Guterman, Shay, Gutiérrez-Cuevas, Rodrigo, Goetschy, Arthur, Popoff, Sébastien M., Bromberg, Yaron
Format: Preprint
Published: 2025
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author Pelc, Guy
Guterman, Shay
Gutiérrez-Cuevas, Rodrigo
Goetschy, Arthur
Popoff, Sébastien M.
Bromberg, Yaron
author_facet Pelc, Guy
Guterman, Shay
Gutiérrez-Cuevas, Rodrigo
Goetschy, Arthur
Popoff, Sébastien M.
Bromberg, Yaron
contents The transport of light in disordered media is governed by open transmission channels, which enable nearly complete transmission of the incident power, despite low average transmission. Extensively studied in diffusive media and chaotic cavities, open channels exhibit unique properties such as universal spatial structure and extended dwell times. However, their experimental study is challenging due to the large number of modes required for control and measurement. We propose a multimode fiber cavity (MMFC) as a platform to explore open channels. Leveraging mode confinement and finite angular spread, MMFCs enable a full control over all channels. This allowed us to achieve an 18-fold power enhancement by selectively exciting an open channel with a transmission rate of $0.90 \pm 0.04$. By analyzing 100 transmission matrices of MMFC realizations, we observed a bimodal transmission eigenvalue distribution, indicating high channel control and low losses. The scalability of MMFCs, combined with long dwell times and potential for nonlinear phenomena, offers new opportunities for studying complex wave transport.
format Preprint
id arxiv_https___arxiv_org_abs_2502_01596
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Open transmission channels in multimode fiber cavities with random mode mixing
Pelc, Guy
Guterman, Shay
Gutiérrez-Cuevas, Rodrigo
Goetschy, Arthur
Popoff, Sébastien M.
Bromberg, Yaron
Optics
Quantum Physics
The transport of light in disordered media is governed by open transmission channels, which enable nearly complete transmission of the incident power, despite low average transmission. Extensively studied in diffusive media and chaotic cavities, open channels exhibit unique properties such as universal spatial structure and extended dwell times. However, their experimental study is challenging due to the large number of modes required for control and measurement. We propose a multimode fiber cavity (MMFC) as a platform to explore open channels. Leveraging mode confinement and finite angular spread, MMFCs enable a full control over all channels. This allowed us to achieve an 18-fold power enhancement by selectively exciting an open channel with a transmission rate of $0.90 \pm 0.04$. By analyzing 100 transmission matrices of MMFC realizations, we observed a bimodal transmission eigenvalue distribution, indicating high channel control and low losses. The scalability of MMFCs, combined with long dwell times and potential for nonlinear phenomena, offers new opportunities for studying complex wave transport.
title Open transmission channels in multimode fiber cavities with random mode mixing
topic Optics
Quantum Physics
url https://arxiv.org/abs/2502.01596