Quantum Skyrmions in Mixed States of Light and Their Nested Topology
arXiv:2604.23571 · doi:10.1021/acsphotonics.6c01382
Abstract
Topological quasiparticles of light, such as classical and quantum optical skyrmions, have so far relied on fully coherent or pure quantum states whose topology is encoded in the entanglement between polarization and two-dimensional spatial modes. Here we show that skyrmionic topology can emerge directly within the density matrix of a mixed quantum state. We introduce a framework in which a coherence-Stokes vector defines a topological texture over the density matrix, enabling the realization of quantum skyrmions using only a pseudospin and a real or synthetic one-dimensional space of modes. For a single photon, the density matrix is analogous to the coherence matrix of classical light, and can be encoded using partially coherent electromagnetic fields. We further analyze the topological texture encoded in a bipartite entangled photon pair, showing how skyrmions arise not only in the full bi-photon system, but also in its reduced subspaces with any pseudospin-mode combination simultaneously. We then explore the robustness of such skyrmions to environmental noise, and discover their persistence in mixed-quantum states of multiple photons. Finally, we propose a feasible experimental route to generate and measure such skyrmions using integrated photonic networks, and suggest avenues for similar implementations in other quantum systems. Our work paves the way for robustly encoding classical information on partially coherent light or on mixed quantum states and for encoding topological charges on many-body quantum systems.
12 pages, 5 figures
References in corpus (16)
- Advances in the Physics of Magnetic Skyrmions and Perspective for Technology
- Optical skyrmions and other topological quasiparticles of light
- Complete methods set for scalable ion trap quantum information processing
- Generation of tunable optical skyrmions on Skyrme-Poincaré sphere
- Particle-like topologies in light
- Supertoroidal light pulses: Propagating electromagnetic skyrmions in free space
- Observation of Topologically Robust Localized Magnetic Plasmon Skyrmions
- Topological Transformation and Free-Space Transport of Photonic Hopfions
- Review: Topology of solitons and singular defects in chiral liquid crystals
- Skyrmion Qubits: Challenges For Future Quantum Computing Applications
- Measuring, processing, and generating partially coherent light with self-configuring optics
- Erasure-cooling, control, and hyper-entanglement of motion in optical tweezers
- Tracking the Evolution of Near-Field Photonic Qubits into High-Dimensional Qudits via State Tomography
- Separating partially coherent light
- Effective skyrmion number for mixed polarization states of light
- Imprinting topology on thermal light