Su Xiaolong, Tian Caixing, Deng Xiaowei, Li Qiang, Xie Changde, Peng Kunchi
State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, People's Republic of China.
Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan Shanxi 030006, People's Republic of China.
Phys Rev Lett. 2016 Dec 9;117(24):240503. doi: 10.1103/PhysRevLett.117.240503. Epub 2016 Dec 6.
Quantum entanglement swapping is one of the most promising ways to realize the quantum connection among local quantum nodes. In this Letter, we present an experimental demonstration of the entanglement swapping between two independent multipartite entangled states, each of which involves a tripartite Greenberger-Horne-Zeilinger (GHZ) entangled state of an optical field. The entanglement swapping is implemented deterministically by means of a joint measurement on two optical modes coming from the two multipartite entangled states respectively and the classical feedforward of the measurement results. After entanglement swapping the two independent multipartite entangled states are merged into a large entangled state in which all unmeasured quantum modes are entangled. The entanglement swapping between a tripartite GHZ state and an Einstein-Podolsky-Rosen entangled state is also demonstrated and the dependence of the resultant entanglement on transmission loss is investigated. The presented experiment provides a feasible technical reference for constructing more complicated quantum networks.
量子纠缠交换是实现本地量子节点间量子连接最具前景的方法之一。在本信函中,我们展示了两个独立多体纠缠态之间的纠缠交换实验,每个多体纠缠态都包含一个光场的三方格林伯格 - 霍恩 - 泽林格(GHZ)纠缠态。通过分别对来自两个多体纠缠态的两个光模式进行联合测量以及测量结果的经典前馈,确定性地实现了纠缠交换。纠缠交换后,两个独立的多体纠缠态合并为一个大的纠缠态,其中所有未测量的量子模式都相互纠缠。还展示了三方GHZ态与爱因斯坦 - 波多尔斯基 - 罗森纠缠态之间的纠缠交换,并研究了所得纠缠对传输损耗的依赖性。所展示的实验为构建更复杂的量子网络提供了可行的技术参考。