Chip-integrated metasurface-enabled single-photon skyrmion sources
Чип-интегрированные источники одиночных фотонов-скрьомионов на основе метаповерхностей
2026-07-11
SCID: 54.1/degeqrfw
Discuss with AI
metasurface-integrated quantum emitternanodiamond color centersnear-field spin-orbit interactionon-chip structured quantum lightsingle-photon skyrmions
Figures from the paper
Abstract (AI)
Skyrmions, topologically stable field configurations, have recently emerged in classical optics as structured light for high-density data applications. Achieving controllable on-chip generation of single-photon skyrmions, while being highly desirable for quantum information technologies, remains challenging due to the nanoscale confinement of quantum emitters. Here we demonstrate a metasurface-integrated quantum emitter platform enabling room-temperature on-chip generation of single-photon skyrmions. Near-field coupling between quantum emitter and propitiously designed surface arrays of meta-atoms mediates spin-orbit interaction, transforming nanoscale-localized dipole emission into free-propagating topologically structured photonic modes. By exploiting this approach for structuring quantum emission from different color centers in nanodiamonds, we realize diverse skyrmionic states, including high-order anti-skyrmions and skyrmionium, and thereby demonstrate its universality across quantum emitters. Our work establishes a unified framework for on-chip structured quantum light sources, offering versatile control of high-dimensional topological states, such as skyrmions, and advancing scalable quantum photonic technologies.
Key Findings
1
Applied the approach to different color centers in nanodiamonds, showing universality across quantum emitters.
2
Demonstrated a metasurface-integrated quantum emitter platform that generates single-photon skyrmions on-chip at room temperature.
3
Near-field coupling between quantum emitters and designed meta-atom surface arrays mediates spin-orbit interaction to convert localized dipole emission into free-propagating topologically structured photonic modes.
4
Realized diverse skyrmionic states—including high-order anti-skyrmions and skyrmionium—enabling versatile control of high-dimensional topological quantum light.
Research Object
Metasurface-integrated quantum emitter platform for on-chip single-photon skyrmion generation
Research Subject
Near-field mediated transformation of nanoscale dipole emission from quantum emitters into free-propagating topologically structured single-photon skyrmion states via metasurface-induced spin–orbit interactions (control and universality across different color-center nanodiamond emitters)
Publication Details
Publication Date
2026-07-11
Journal
Publisher
ISSN
Cited by
1
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest