Optical excitations of Skyrmions, knotted solitons, and defects in atoms
arXiv:2109.13927 · doi:10.1038/s42005-022-00829-y
Abstract
Analogies between non-trivial topologies of matter and light have inspired numerous studies, including defect formation in structured light and topological photonic band-structures. Three-dimensional topological objects of localized particle-like nature attract broad interest across discipline boundaries from elementary particle physics and cosmology to condensed matter physics. Here we show how simple structured light beams can be transformed into optical excitations of atoms with considerably more complex topologies representing three-dimensional particle-like Skyrmions. This construction can also be described in terms of linked Hopf maps, analogous to knotted solitons of the Skyrme-Faddeev model. We identify the transverse polarization density current as the effective magnetic gauge potential for the Chern-Simons helicity term. While we prepare simpler two-dimensional baby-Skyrmions and singular defects using the traditional Stokes vectors on the Poincaré sphere for light, particle-like topologies can only be achieved in the full optical hypersphere description that no longer discards the variation of the total electromagnetic phase of vibration.
9 pages, 4 figures
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- Theory of paraxial optical Skyrmions
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- Optical skyrmion lattices accelerating in free space
- Topological optical skyrmion transfer to matter
- Optical magnetism and wavefront control by arrays of strontium atoms
- Topological atom optics and beyond with knotted quantum wavefunctions
- Photonic Shankar skyrmion
- Structured light and induced vorticity in superconductors II: Quantum Print with Laguerre-Gaussian beam
- Structured light and induced vorticity in superconductors I: Linearly polarized light
- Topologically driven Rabi-oscillating interference dislocation
- Coupled quantum vortex kinematics and Berry curvature in real space
- Topological interfaces crossed by defects and textures of continuous and discrete point group symmetries in spin-2 Bose-Einstein condensates