Tunable spatio-spectral Target Skyrmions and topological multiplexing

Fuente: arXiv
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Main Authors: Ornelas, Pedro, Modak, Niladri, Korichi, Oussama, Nape, Isaac, Forbes, Andrew, Fickler, Robert
Format: Preprint
Published: 2026
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author Ornelas, Pedro
Modak, Niladri
Korichi, Oussama
Nape, Isaac
Forbes, Andrew
Fickler, Robert
author_facet Ornelas, Pedro
Modak, Niladri
Korichi, Oussama
Nape, Isaac
Forbes, Andrew
Fickler, Robert
contents Optical Skyrmions have recently garnered much interest providing a potential avenue for high capacity, robust topological information transfer. Typically, Skyrmions are derived from the coupling of just two degrees of freedom (DoFs) limiting their versatility. In this work we realize spatio-spectral Skyrmions derived from the non-separability between three DoFs: wavelength, space and polarization. A compact and simple technique is used to generate the spatio-spectral vector beams (SSVB) carrying the desired Skyrmionic structure, offering simple pathways for complex Skyrmionic beam design. The topological structure, witnessed through a map between the spatio-spectral plane and the Poincaré sphere, exhibits an additional tunable $kπ$ parameter thereby enhancing the number of controllable DoFs. Our three DoF construction allows us to propose a novel topological multiplexing strategy that independently encodes different Skyrmion numbers at different radii of the field. We experimentally demonstrate the practicality of this approach by transmitting and receiving three distinct Skyrmion numbers encoded into a single topological field, for the first form of mode division multiplexing with Skyrmion topology. This work opens up new avenues for dense information encoding using multiple topological channels encoded in a single light field.
format Preprint
id arxiv_https___arxiv_org_abs_2605_14441
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Tunable spatio-spectral Target Skyrmions and topological multiplexing
Ornelas, Pedro
Modak, Niladri
Korichi, Oussama
Nape, Isaac
Forbes, Andrew
Fickler, Robert
Optics
Optical Skyrmions have recently garnered much interest providing a potential avenue for high capacity, robust topological information transfer. Typically, Skyrmions are derived from the coupling of just two degrees of freedom (DoFs) limiting their versatility. In this work we realize spatio-spectral Skyrmions derived from the non-separability between three DoFs: wavelength, space and polarization. A compact and simple technique is used to generate the spatio-spectral vector beams (SSVB) carrying the desired Skyrmionic structure, offering simple pathways for complex Skyrmionic beam design. The topological structure, witnessed through a map between the spatio-spectral plane and the Poincaré sphere, exhibits an additional tunable $kπ$ parameter thereby enhancing the number of controllable DoFs. Our three DoF construction allows us to propose a novel topological multiplexing strategy that independently encodes different Skyrmion numbers at different radii of the field. We experimentally demonstrate the practicality of this approach by transmitting and receiving three distinct Skyrmion numbers encoded into a single topological field, for the first form of mode division multiplexing with Skyrmion topology. This work opens up new avenues for dense information encoding using multiple topological channels encoded in a single light field.
title Tunable spatio-spectral Target Skyrmions and topological multiplexing
topic Optics
url https://arxiv.org/abs/2605.14441