arXiv Open Access 2025

Magneto-optical Skyrmion for manipulation of arbitrary light polarization

Xinghong Chen Xingxiang Wang Guanjie Zhang Xiao Hu Wei Tao +2 lainnya
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Abstrak

Dynamic manipulation of arbitrary light polarization is of fundamental importance for versatile optical functionalities, yet realizing such full-Poincaré-sphere control within compact nanophotonic architectures remains a formidable challenge. Here, we theoretically propose and numerically demonstrate a magneto-optical skyrmion platform enabling full polarization control of cavity eigenmodes. We reveal the correspondence between the near-field wavefunctions of degenerate dipoles and far-field polarization. By applying multidirectional magnetic fields to magneto-optical photonic crystals, we achieve any complex superposition of orthogonal eigenmodes, thereby realizing arbitrary far-field polarization. This mapping manifests as a skyrmion with a topological charge of 2, guaranteeing coverage of the entire Poincaré sphere. Our theoretical model shows excellent agreement with full-wave simulations. Furthermore, we realize bound states in the continuum (BICs) with dynamically tunable polarization textures and demonstrate high-performance polarization-selective emission and transmission. This work establishes a topological paradigm for precise polarization shaping, offering new avenues for advanced optical communication and sensing.

Topik & Kata Kunci

Penulis (7)

X

Xinghong Chen

X

Xingxiang Wang

G

Guanjie Zhang

X

Xiao Hu

W

Wei Tao

T

Tomohiro Amemiya

Y

Yifei Mao

Format Sitasi

Chen, X., Wang, X., Zhang, G., Hu, X., Tao, W., Amemiya, T. et al. (2025). Magneto-optical Skyrmion for manipulation of arbitrary light polarization. https://arxiv.org/abs/2512.21006

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Tahun Terbit
2025
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en
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arXiv
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Open Access ✓