Wang Tie-Jun, Mi Si-Chen, Wang Chuan
Opt Express. 2017 Feb 6;25(3):2969-2982. doi: 10.1364/OE.25.002969.
As the interaction between the photons and the environment which will make the entangled photon pairs in less entangled states or even in mixed states, the security and the efficiency of quantum communication will decrease. We present an efficient hyperentanglement purification protocol that distills nonlocal high-fidelity hyper-entangled Bell states in both polarization and spatial-mode degrees of freedom from ensembles of two-photon system in mixed states using linear optics. Here, we consider the influence of the photon loss in the channel which generally is ignored in the conventional entanglement purification and hyperentanglement purification (HEP) schemes. Compared with previous HEP schemes, our HEP scheme decreases the requirement for nonlocal resources by employing high-dimensional mode-check measurement, and leads to a higher fidelity, especially in the range where the conventional HEP schemes become invalid but our scheme still can work.
由于光子与环境之间的相互作用会使纠缠光子对处于纠缠度较低的状态甚至混合态,量子通信的安全性和效率将会降低。我们提出了一种高效的超纠缠纯化协议,该协议利用线性光学从混合态双光子系统的系综中,在偏振和空间模式自由度上提取非局域高保真超纠缠贝尔态。在此,我们考虑了信道中光子损耗的影响,而这在传统的纠缠纯化和超纠缠纯化(HEP)方案中通常被忽略。与先前的HEP方案相比,我们的HEP方案通过采用高维模式检查测量降低了对非局域资源的要求,并实现了更高的保真度,特别是在传统HEP方案失效而我们的方案仍能起作用的范围内。