Li Tao, Yang Guo-Jian, Deng Fu-Guo
Opt Express. 2014 Oct 6;22(20):23897-911. doi: 10.1364/OE.22.023897.
Atomic ensembles are effective memory nodes for quantum communication network due to the long coherence time and the collective enhancement effect for the nonlinear interaction between an ensemble and a photon. Here we investigate the possibility of achieving the entanglement distillation for nonlocal atomic ensembles by the input-output process of a single photon as a result of cavity quantum electrodynamics. We give an optimal entanglement concentration protocol (ECP) for two-atomic-ensemble systems in a partially entangled pure state with known parameters and an efficient ECP for the systems in an unknown partially entangled pure state with a nondestructive parity-check detector (PCD). For the systems in a mixed entangled state, we introduce an entanglement purification protocol with PCDs. These entanglement distillation protocols have high fidelity and efficiency with current experimental techniques, and they are useful for quantum communication network with atomic-ensemble memories.
由于具有较长的相干时间以及原子系综与光子之间非线性相互作用的集体增强效应,原子系综是量子通信网络中有效的存储节点。在此,我们研究了通过腔量子电动力学的单光子输入 - 输出过程,实现非局域原子系综纠缠提纯的可能性。对于处于具有已知参数的部分纠缠纯态的双原子系综系统,我们给出了一种最优纠缠浓缩协议(ECP),对于处于具有无损奇偶校验探测器(PCD)的未知部分纠缠纯态的系统,我们给出了一种高效的ECP。对于处于混合纠缠态的系统,我们引入了一种带有PCD的纠缠纯化协议。这些纠缠提纯协议在当前实验技术下具有高保真度和高效率,并且对具有原子系综存储器的量子通信网络很有用。