Kan Yinhui, Liu Xujing, Kumar Shailesh, Kulikova Liudmilla F, Davydov Valery A, Agafonov Viatcheslav N, Bozhevolnyi Sergey I
Center for Nano Optics, University of Southern Denmark, DK-5230 Odense M, Denmark.
L.F. Vereshchagin Institute for High Pressure Physics, Russian Academy of Sciences, Troitsk, Moscow 142190, Russia.
Sci Adv. 2024 Nov 8;10(45):eadq6298. doi: 10.1126/sciadv.adq6298. Epub 2024 Nov 6.
Hybrid integration of solid-state quantum emitters (QEs) into nanophotonic structures opens enticing perspectives for exploiting multiple degrees of freedom of single-photon sources for on-chip quantum photonic applications. However, the state-of-the-art single-photon sources are mostly limited to two-level states or scalar vortex beams. Direct generation of high-dimensional structured single photons remains challenging, being still in its infancy. Here, we propose a general strategy to design highly entangled high-dimensional spin-orbital single-photon sources by taking full advantage of the spatial freedom to design QE-coupled composite (i.e., Moiré/multipart) metasurfaces. We demonstrate the generation of arbitrary vectorial spin-orbital photon emission in high-dimensional Hilbert spaces, mapping the generated states on hybrid-order Bloch spheres. We further realize single-photon sources of high-dimensional spin-orbital quantum emission and experimentally verify the entanglement of high-dimensional superposition states with high fidelity. We believe that the results obtained facilitate further progress in integrated solutions for the deployment of next-generation high-capacity quantum information technologies.
将固态量子发射器(QEs)混合集成到纳米光子结构中,为利用单光子源的多个自由度实现片上量子光子应用开辟了诱人的前景。然而,目前最先进的单光子源大多限于二能级状态或标量涡旋光束。直接生成高维结构化单光子仍然具有挑战性,目前仍处于起步阶段。在此,我们提出了一种通用策略,通过充分利用空间自由度来设计QE耦合复合(即莫尔/多部分)超表面,以设计高度纠缠的高维自旋-轨道单光子源。我们展示了在高维希尔伯特空间中生成任意矢量自旋-轨道光子发射,将生成的状态映射到混合阶布洛赫球上。我们进一步实现了高维自旋-轨道量子发射的单光子源,并通过实验验证了高维叠加态的高保真纠缠。我们相信,所获得的结果有助于在下一代高容量量子信息技术部署的集成解决方案方面取得进一步进展。