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Optical skyrmions from metafibers with subwavelength features

Author

Listed:
  • Tiantian He

    (Haidian District
    Haidian District)

  • Yuan Meng

    (Haidian District
    Washington University in St Louis)

  • Lele Wang

    (Haidian District
    Haidian District)

  • Hongkun Zhong

    (Haidian District
    Haidian District)

  • Nilo Mata-Cervera

    (Nanyang Technological University)

  • Dan Li

    (Haidian District
    Haidian District)

  • Ping Yan

    (Haidian District
    Haidian District)

  • Qiang Liu

    (Haidian District
    Haidian District)

  • Yijie Shen

    (Nanyang Technological University
    Nanyang Technological University)

  • Qirong Xiao

    (Haidian District
    Haidian District)

Abstract

Optical skyrmions are an emerging class of structured light with sophisticated particle-like topologies with great potential for revolutionizing modern informatics. However, the current generation of optical skyrmions involves complex or bulky systems, hindering the development of practical applications. Here, exploiting the emergent “lab-on-fiber” technology, we demonstrate the design of a metafiber-integrated photonic skyrmion generator. We not only successfully generate high-quality optical skyrmions from metafibers, but also verify their remarkable properties, such as topology switchability and topology stability with subwavelength polarization features beyond the diffraction limits. Our flexible fiber-integrated optical skyrmions platform paves the avenue for future applications of topologically-enhanced remote super-resolution microscopy and robust information transfer.

Suggested Citation

  • Tiantian He & Yuan Meng & Lele Wang & Hongkun Zhong & Nilo Mata-Cervera & Dan Li & Ping Yan & Qiang Liu & Yijie Shen & Qirong Xiao, 2024. "Optical skyrmions from metafibers with subwavelength features," Nature Communications, Nature, vol. 15(1), pages 1-9, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-54207-z
    DOI: 10.1038/s41467-024-54207-z
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