Tian Long, Xu Zhongxiao, Chen Lirong, Ge Wei, Yuan Haoxiang, Wen Yafei, Wang Shengzhi, Li Shujing, Wang Hai
The State Key Laboratory of Quantum Optics and Quantum Optics Devices, Collaborative Innovation Center of Extreme Optics, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, People's Republic of China.
Phys Rev Lett. 2017 Sep 29;119(13):130505. doi: 10.1103/PhysRevLett.119.130505.
The light-matter quantum interface that can create quantum correlations or entanglement between a photon and one atomic collective excitation is a fundamental building block for a quantum repeater. The intrinsic limit is that the probability of preparing such nonclassical atom-photon correlations has to be kept low in order to suppress multiexcitation. To enhance this probability without introducing multiexcitation errors, a promising scheme is to apply multimode memories to the interface. Significant progress has been made in temporal, spectral, and spatial multiplexing memories, but the enhanced probability for generating the entangled atom-photon pair has not been experimentally realized. Here, by using six spin-wave-photon entanglement sources, a switching network, and feedforward control, we build a multiplexed light-matter interface and then demonstrate a ∼sixfold (∼fourfold) probability increase in generating entangled atom-photon (photon-photon) pairs. The measured compositive Bell parameter for the multiplexed interface is 2.49±0.03 combined with a memory lifetime of up to ∼51 μs.
能够在光子与一个原子集体激发之间产生量子关联或纠缠的光与物质量子接口是量子中继器的基本组成部分。其内在限制在于,为了抑制多激发,制备这种非经典原子 - 光子关联的概率必须保持较低。为了在不引入多激发误差的情况下提高该概率,一个有前景的方案是将多模存储器应用于该接口。在时间、光谱和空间复用存储器方面已经取得了显著进展,但尚未通过实验实现生成纠缠原子 - 光子对概率的提高。在此,我们通过使用六个自旋波 - 光子纠缠源、一个切换网络和前馈控制,构建了一个复用光与物质接口,然后证明生成纠缠原子 - 光子(光子 - 光子)对的概率提高了约六倍(约四倍)。复用接口的实测综合贝尔参数为2.49±0.03,同时存储器寿命长达约51 μs。