Dual-wavelength quantum skyrmions from liquid crystal topological defect
Dual-wavelength quantum skyrmions from liquid crystal topological defect
We propose a spin-orbit strategy for generating dual-wavelength quantum skyrmions, realized either as entangled photon pairs at distinct wavelengths or as heralded single-photon states at a given wavelength -- regimes neither previously conceptualized nor demonstrated. By coupling a two-photon entangled state to an electrically tunable liquid crystal topological defect, we engineer both nonlocal and local skyrmionic topologies in a reconfigurable platform. These results open new directions for topological quantum state engineering and the topological richness of liquid crystals.
Mwezi Koni、Fazilah Nothlawala、Vagharshak Hakobyan、Isaac Nape、Etienne Brasselet、Andrew Forbes
物理学
Mwezi Koni,Fazilah Nothlawala,Vagharshak Hakobyan,Isaac Nape,Etienne Brasselet,Andrew Forbes.Dual-wavelength quantum skyrmions from liquid crystal topological defect[EB/OL].(2025-07-30)[2025-08-06].https://arxiv.org/abs/2507.22815.点此复制
评论