Wang Wei, Zhang Kai, Jing Jietai
State Key Laboratory of Precision Spectroscopy, Joint Institute of Advanced Science and Technology, School of Physics and Electronic Science, East China Normal University, Shanghai 200062, China.
Department of Physics, Zhejiang University, Hangzhou 310027, China.
Phys Rev Lett. 2020 Oct 2;125(14):140501. doi: 10.1103/PhysRevLett.125.140501.
Multipartite entanglement (ME) is the fundamental ingredient for building quantum networks. The scale of ME determines its quantum information carrying and processing capability. Most of the current efforts for boosting the scale of ME focus on increasing the number of entangled nodes. However, the number of channels for broadcasting ME is also an important index for characterizing its scale. In this Letter, we experimentally exploit orbital angular momentum multiplexing and the spatial pump shaping technique to simultaneously and deterministically generate 11 channels of individually accessible and mutually orthogonal continuous variable (CV) spatially separated hexapartite entangled states over 66 optical modes in a single quantum system. These results suggest that our method can greatly expand the scale of ME and provide a new perspective and platform to construct a CV quantum network.
多体纠缠(ME)是构建量子网络的基本要素。ME的规模决定了其量子信息承载和处理能力。当前大多数提高ME规模的努力都集中在增加纠缠节点的数量上。然而,用于广播ME的通道数量也是表征其规模的一个重要指标。在本信函中,我们通过实验利用轨道角动量复用和空间泵浦整形技术,在单个量子系统中,在66个光学模式上同时且确定性地生成11个通道的、可单独访问且相互正交的连续变量(CV)空间分离六体纠缠态。这些结果表明,我们的方法可以极大地扩展ME的规模,并为构建CV量子网络提供新的视角和平台。